메뉴 건너뛰기




Volumn 38, Issue 2, 2014, Pages 172-184

Cell cycle regulation of homologous recombination in Saccharomyces cerevisiae

Author keywords

Cell cycle; DNA end resection; Homologous recombination; Post translational regulation; Saccharomyces cerevisiae; Transcriptional regulation

Indexed keywords

CYCLIN DEPENDENT KINASE; FUNGAL PROTEIN; KU ANTIGEN; MRE11 PROTEIN; PROTEIN SAE2; UNCLASSIFIED DRUG;

EID: 84896722957     PISSN: 01686445     EISSN: 15746976     Source Type: Journal    
DOI: 10.1111/1574-6976.12066     Document Type: Review
Times cited : (53)

References (130)
  • 2
    • 69849097676 scopus 로고    scopus 로고
    • Analysis of repair mechanism choice during homologous recombination
    • Agmon N, Pur S, Liefshitz B & Kupiec M (2009) Analysis of repair mechanism choice during homologous recombination. Nucleic Acids Res 37: 5081-5092.
    • (2009) Nucleic Acids Res , vol.37 , pp. 5081-5092
    • Agmon, N.1    Pur, S.2    Liefshitz, B.3    Kupiec, M.4
  • 3
    • 0026701665 scopus 로고
    • Characterization of DNA-binding and strand-exchange stimulation properties of y-RPA, a yeast single-strand-DNA-binding protein
    • Alani E, Thresher R, Griffith JD & Kolodner RD (1992) Characterization of DNA-binding and strand-exchange stimulation properties of y-RPA, a yeast single-strand-DNA-binding protein. J Mol Biol 227: 54-71.
    • (1992) J Mol Biol , vol.227 , pp. 54-71
    • Alani, E.1    Thresher, R.2    Griffith, J.D.3    Kolodner, R.D.4
  • 5
    • 0037317683 scopus 로고    scopus 로고
    • Molecular dissection of mitotic recombination in the yeast Saccharomyces cerevisiae
    • Aylon Y, Liefshitz B, Bitan-Banin G & Kupiec M (2003) Molecular dissection of mitotic recombination in the yeast Saccharomyces cerevisiae. Mol Cell Biol 23: 1403-1417.
    • (2003) Mol Cell Biol , vol.23 , pp. 1403-1417
    • Aylon, Y.1    Liefshitz, B.2    Bitan-Banin, G.3    Kupiec, M.4
  • 6
    • 11244269445 scopus 로고    scopus 로고
    • The CDK regulates repair of double-strand breaks by homologous recombination during the cell cycle
    • Aylon Y, Liefshitz B & Kupiec M (2004) The CDK regulates repair of double-strand breaks by homologous recombination during the cell cycle. EMBO J 23: 4868-4875.
    • (2004) EMBO J , vol.23 , pp. 4868-4875
    • Aylon, Y.1    Liefshitz, B.2    Kupiec, M.3
  • 7
    • 84880952894 scopus 로고    scopus 로고
    • DNA resection proteins Sgs1 and Exo1 are required for G1 checkpoint activation in budding yeast
    • Balogun FO, Truman AW & Kron SJ (2013) DNA resection proteins Sgs1 and Exo1 are required for G1 checkpoint activation in budding yeast. DNA Repair (Amst) 12: 751-760.
    • (2013) DNA Repair (Amst) , vol.12 , pp. 751-760
    • Balogun, F.O.1    Truman, A.W.2    Kron, S.J.3
  • 8
    • 67349269523 scopus 로고    scopus 로고
    • Rad52 recruitment is DNA replication independent and regulated by Cdc28 and the Mec1 kinase
    • Barlow JH & Rothstein R (2009) Rad52 recruitment is DNA replication independent and regulated by Cdc28 and the Mec1 kinase. EMBO J 28: 1121-1130.
    • (2009) EMBO J , vol.28 , pp. 1121-1130
    • Barlow, J.H.1    Rothstein, R.2
  • 9
    • 39549114009 scopus 로고    scopus 로고
    • Differential regulation of the cellular response to DNA double-strand breaks in G1
    • Barlow JH, Lisby M & Rothstein R (2008) Differential regulation of the cellular response to DNA double-strand breaks in G1. Mol Cell 30: 73-85.
    • (2008) Mol Cell , vol.30 , pp. 73-85
    • Barlow, J.H.1    Lisby, M.2    Rothstein, R.3
  • 10
    • 0028986667 scopus 로고
    • G1 cyclin turnover and nutrient uptake are controlled by a common pathway in yeast
    • Barral Y, Jentsch S & Mann C (1995) G1 cyclin turnover and nutrient uptake are controlled by a common pathway in yeast. Genes Dev 9: 399-409.
    • (1995) Genes Dev , vol.9 , pp. 399-409
    • Barral, Y.1    Jentsch, S.2    Mann, C.3
  • 11
    • 84878515115 scopus 로고    scopus 로고
    • Bck2 acts through the MADS box protein Mcm1 to activate cell-cycle-regulated genes in budding yeast
    • Bastajian N, Friesen H & Andrews BJ (2013) Bck2 acts through the MADS box protein Mcm1 to activate cell-cycle-regulated genes in budding yeast. PLoS Genet 9: e1003507.
    • (2013) PLoS Genet , vol.9
    • Bastajian, N.1    Friesen, H.2    Andrews, B.J.3
  • 12
    • 79955499183 scopus 로고    scopus 로고
    • The Shu complex, which contains Rad51 paralogues, promotes DNA repair through inhibition of the Srs2 anti-recombinase
    • Bernstein KA, Reid RJ, Sunjevaric I, Demuth K, Burgess RC & Rothstein R (2011) The Shu complex, which contains Rad51 paralogues, promotes DNA repair through inhibition of the Srs2 anti-recombinase. Mol Biol Cell 22: 1599-1607.
    • (2011) Mol Biol Cell , vol.22 , pp. 1599-1607
    • Bernstein, K.A.1    Reid, R.J.2    Sunjevaric, I.3    Demuth, K.4    Burgess, R.C.5    Rothstein, R.6
  • 13
    • 77950862944 scopus 로고    scopus 로고
    • Double Holliday junctions are intermediates of DNA break repair
    • Bzymek M, Thayer NH, Oh SD, Kleckner N & Hunter N (2010) Double Holliday junctions are intermediates of DNA break repair. Nature 464: 937-941.
    • (2010) Nature , vol.464 , pp. 937-941
    • Bzymek, M.1    Thayer, N.H.2    Oh, S.D.3    Kleckner, N.4    Hunter, N.5
  • 15
    • 23044479628 scopus 로고    scopus 로고
    • Distinct roles for the RSC and Swi/Snf ATP-dependent chromatin remodelers in DNA double-strand break repair
    • Chai B, Huang J, Cairns BR & Laurent BC (2005) Distinct roles for the RSC and Swi/Snf ATP-dependent chromatin remodelers in DNA double-strand break repair. Genes Dev 19: 1656-1661.
    • (2005) Genes Dev , vol.19 , pp. 1656-1661
    • Chai, B.1    Huang, J.2    Cairns, B.R.3    Laurent, B.C.4
  • 16
    • 34547192058 scopus 로고    scopus 로고
    • BLM is required for faithful chromosome segregation and its localization defines a class of ultrafine anaphase bridges
    • Chan KL, North PS & Hickson ID (2007) BLM is required for faithful chromosome segregation and its localization defines a class of ultrafine anaphase bridges. EMBO J 26: 3397-3409.
    • (2007) EMBO J , vol.26 , pp. 3397-3409
    • Chan, K.L.1    North, P.S.2    Hickson, I.D.3
  • 18
    • 84866954195 scopus 로고    scopus 로고
    • The Fun30 nucleosome remodeller promotes resection of DNA double-strand break ends
    • Chen X, Cui D, Papusha A, Zhang X, Chu CD, Tang J, Chen K, Pan X & Ira G (2012) The Fun30 nucleosome remodeller promotes resection of DNA double-strand break ends. Nature 489: 576-580.
    • (2012) Nature , vol.489 , pp. 576-580
    • Chen, X.1    Cui, D.2    Papusha, A.3    Zhang, X.4    Chu, C.D.5    Tang, J.6    Chen, K.7    Pan, X.8    Ira, G.9
  • 19
    • 0032112293 scopus 로고    scopus 로고
    • A genome-wide transcriptional analysis of the mitotic cell cycle
    • Cho RJ, Campbell MJ, Winzeler EA et al. (1998) A genome-wide transcriptional analysis of the mitotic cell cycle. Mol Cell 2: 65-73.
    • (1998) Mol Cell , vol.2 , pp. 65-73
    • Cho, R.J.1    Campbell, M.J.2    Winzeler, E.A.3
  • 20
    • 33644691699 scopus 로고    scopus 로고
    • The Saccharomyces cerevisiae Sae2 protein promotes resection and bridging of double strand break ends
    • Clerici M, Mantiero D, Lucchini G & Longhese MP (2005) The Saccharomyces cerevisiae Sae2 protein promotes resection and bridging of double strand break ends. J Biol Chem 280: 38631-38638.
    • (2005) J Biol Chem , vol.280 , pp. 38631-38638
    • Clerici, M.1    Mantiero, D.2    Lucchini, G.3    Longhese, M.P.4
  • 21
    • 48649086824 scopus 로고    scopus 로고
    • The Yku70-Yku80 complex contributes to regulate double-strand break processing and checkpoint activation during the cell cycle
    • Clerici M, Mantiero D, Guerini I, Lucchini G & Longhese MP (2008) The Yku70-Yku80 complex contributes to regulate double-strand break processing and checkpoint activation during the cell cycle. EMBO Rep 9: 810-818.
    • (2008) EMBO Rep , vol.9 , pp. 810-818
    • Clerici, M.1    Mantiero, D.2    Guerini, I.3    Lucchini, G.4    Longhese, M.P.5
  • 22
    • 33749511276 scopus 로고    scopus 로고
    • Double-strand breaks arising by replication through a nick are repaired by cohesin-dependent sister-chromatid exchange
    • Cortes-Ledesma F & Aguilera A (2006) Double-strand breaks arising by replication through a nick are repaired by cohesin-dependent sister-chromatid exchange. EMBO Rep 7: 919-926.
    • (2006) EMBO Rep , vol.7 , pp. 919-926
    • Cortes-Ledesma, F.1    Aguilera, A.2
  • 23
    • 84866898711 scopus 로고    scopus 로고
    • The yeast Fun30 and human SMARCAD1 chromatin remodellers promote DNA end resection
    • Costelloe T, Louge R, Tomimatsu N et al. (2012) The yeast Fun30 and human SMARCAD1 chromatin remodellers promote DNA end resection. Nature 489: 581-584.
    • (2012) Nature , vol.489 , pp. 581-584
    • Costelloe, T.1    Louge, R.2    Tomimatsu, N.3
  • 25
    • 2942755857 scopus 로고    scopus 로고
    • Cln3 activates G1-specific transcription via phosphorylation of the SBF bound repressor Whi5
    • de Bruin RA, McDonald WH, Kalashnikova TI, Yates J 3rd & Wittenberg C (2004) Cln3 activates G1-specific transcription via phosphorylation of the SBF bound repressor Whi5. Cell 117: 887-898.
    • (2004) Cell , vol.117 , pp. 887-898
    • de Bruin, R.A.1    McDonald, W.H.2    Kalashnikova, T.I.3    Yates III, J.4    Wittenberg, C.5
  • 27
    • 0038412810 scopus 로고    scopus 로고
    • Protein feature based identification of cell cycle regulated proteins in yeast
    • de Lichtenberg U, Jensen TS, Jensen LJ & Brunak S (2003) Protein feature based identification of cell cycle regulated proteins in yeast. J Mol Biol 329: 663-674.
    • (2003) J Mol Biol , vol.329 , pp. 663-674
    • de Lichtenberg, U.1    Jensen, T.S.2    Jensen, L.J.3    Brunak, S.4
  • 29
    • 0037131257 scopus 로고    scopus 로고
    • The Rad51-dependent pairing of long DNA substrates is stabilized by replication protein A
    • Eggler AL, Inman RB & Cox MM (2002) The Rad51-dependent pairing of long DNA substrates is stabilized by replication protein A. J Biol Chem 277: 39280-39288.
    • (2002) J Biol Chem , vol.277 , pp. 39280-39288
    • Eggler, A.L.1    Inman, R.B.2    Cox, M.M.3
  • 30
    • 65649090278 scopus 로고    scopus 로고
    • Cdc28/Cdk1 positively and negatively affects genome stability in S. cerevisiae
    • Enserink JM, Hombauer H, Huang ME & Kolodner RD (2009) Cdc28/Cdk1 positively and negatively affects genome stability in S. cerevisiae. J Cell Biol 185: 423-437.
    • (2009) J Cell Biol , vol.185 , pp. 423-437
    • Enserink, J.M.1    Hombauer, H.2    Huang, M.E.3    Kolodner, R.D.4
  • 31
    • 0021235953 scopus 로고
    • Gene conversion at different points in the mitotic cycle of Saccharomyces cerevisiae
    • Fabre F, Boulet A & Roman H (1984) Gene conversion at different points in the mitotic cycle of Saccharomyces cerevisiae. Mol Gen Genet 195: 139-143.
    • (1984) Mol Gen Genet , vol.195 , pp. 139-143
    • Fabre, F.1    Boulet, A.2    Roman, H.3
  • 32
    • 84861843272 scopus 로고    scopus 로고
    • CDK targeting of NBS1 promotes DNA-end resection, replication restart and homologous recombination
    • Falck J, Forment JV, Coates J, Mistrik M, Lukas J, Bartek J & Jackson SP (2012) CDK targeting of NBS1 promotes DNA-end resection, replication restart and homologous recombination. EMBO Rep 13: 561-568.
    • (2012) EMBO Rep , vol.13 , pp. 561-568
    • Falck, J.1    Forment, J.V.2    Coates, J.3    Mistrik, M.4    Lukas, J.5    Bartek, J.6    Jackson, S.P.7
  • 33
  • 34
    • 58549103915 scopus 로고    scopus 로고
    • Bck2 is a phase-independent activator of cell cycle-regulated genes in yeast
    • Ferrezuelo F, Aldea M & Futcher B (2009) Bck2 is a phase-independent activator of cell cycle-regulated genes in yeast. Cell Cycle 8: 239-252.
    • (2009) Cell Cycle , vol.8 , pp. 239-252
    • Ferrezuelo, F.1    Aldea, M.2    Futcher, B.3
  • 35
    • 0037815412 scopus 로고    scopus 로고
    • Mcm7, a subunit of the presumptive MCM helicase, modulates its own expression in conjunction with Mcm1
    • Fitch MJ, Donato JJ & Tye BK (2003) Mcm7, a subunit of the presumptive MCM helicase, modulates its own expression in conjunction with Mcm1. J Biol Chem 278: 25408-25416.
    • (2003) J Biol Chem , vol.278 , pp. 25408-25416
    • Fitch, M.J.1    Donato, J.J.2    Tye, B.K.3
  • 36
    • 0037124355 scopus 로고    scopus 로고
    • Mutations in yeast Rad51 that partially bypass the requirement for Rad55 and Rad57 in DNA repair by increasing the stability of Rad51-DNA complexes
    • Fortin GS & Symington LS (2002) Mutations in yeast Rad51 that partially bypass the requirement for Rad55 and Rad57 in DNA repair by increasing the stability of Rad51-DNA complexes. EMBO J 21: 3160-3170.
    • (2002) EMBO J , vol.21 , pp. 3160-3170
    • Fortin, G.S.1    Symington, L.S.2
  • 37
    • 83255187901 scopus 로고    scopus 로고
    • Functional interplay of the Mre11 nuclease and Ku in the response to replication-associated DNA damage
    • Foster SS, Balestrini A & Petrini JH (2011) Functional interplay of the Mre11 nuclease and Ku in the response to replication-associated DNA damage. Mol Cell Biol 31: 4379-4389.
    • (2011) Mol Cell Biol , vol.31 , pp. 4379-4389
    • Foster, S.S.1    Balestrini, A.2    Petrini, J.H.3
  • 39
    • 0030570423 scopus 로고    scopus 로고
    • Hydroxyurea induces recombination in dividing but not in G1 or G2 cell cycle arrested yeast cells
    • Galli A & Schiestl RH (1996) Hydroxyurea induces recombination in dividing but not in G1 or G2 cell cycle arrested yeast cells. Mutat Res 354: 69-75.
    • (1996) Mutat Res , vol.354 , pp. 69-75
    • Galli, A.1    Schiestl, R.H.2
  • 40
    • 79451472566 scopus 로고    scopus 로고
    • Dpb11/TopBP1 plays distinct roles in DNA replication, checkpoint response and homologous recombination
    • Germann SM, Oestergaard VH, Haas C, Salis P, Motegi A & Lisby M (2011) Dpb11/TopBP1 plays distinct roles in DNA replication, checkpoint response and homologous recombination. DNA Repair (Amst) 10: 210-224.
    • (2011) DNA Repair (Amst) , vol.10 , pp. 210-224
    • Germann, S.M.1    Oestergaard, V.H.2    Haas, C.3    Salis, P.4    Motegi, A.5    Lisby, M.6
  • 43
    • 84860548726 scopus 로고    scopus 로고
    • Mating-type genes and MAT switching in Saccharomyces cerevisiae
    • Haber JE (2012) Mating-type genes and MAT switching in Saccharomyces cerevisiae. Genetics 191: 33-64.
    • (2012) Genetics , vol.191 , pp. 33-64
    • Haber, J.E.1
  • 44
    • 0029119967 scopus 로고
    • Complex formation in yeast double-strand break repair: participation of Rad51, Rad52, Rad55, and Rad57 proteins
    • Hays SL, Firmenich AA & Berg P (1995) Complex formation in yeast double-strand break repair: participation of Rad51, Rad52, Rad55, and Rad57 proteins. P Natl Acad Sci USA 92: 6925-6929.
    • (1995) P Natl Acad Sci USA , vol.92 , pp. 6925-6929
    • Hays, S.L.1    Firmenich, A.A.2    Berg, P.3
  • 45
    • 79952768906 scopus 로고    scopus 로고
    • Real-time analysis of double-strand DNA break repair by homologous recombination
    • Hicks WM, Yamaguchi M & Haber JE (2011) Real-time analysis of double-strand DNA break repair by homologous recombination. P Natl Acad Sci USA 108: 3108-3115.
    • (2011) P Natl Acad Sci USA , vol.108 , pp. 3108-3115
    • Hicks, W.M.1    Yamaguchi, M.2    Haber, J.E.3
  • 46
    • 0036682314 scopus 로고    scopus 로고
    • The Rad50 zinc-hook is a structure joining Mre11 complexes in DNA recombination and repair
    • Hopfner KP, Craig L, Moncalian G et al. (2002) The Rad50 zinc-hook is a structure joining Mre11 complexes in DNA recombination and repair. Nature 418: 562-566.
    • (2002) Nature , vol.418 , pp. 562-566
    • Hopfner, K.P.1    Craig, L.2    Moncalian, G.3
  • 47
    • 66149114020 scopus 로고    scopus 로고
    • Human CtIP mediates cell cycle control of DNA end resection and double strand break repair
    • Huertas P & Jackson SP (2009) Human CtIP mediates cell cycle control of DNA end resection and double strand break repair. J Biol Chem 284: 9558-9565.
    • (2009) J Biol Chem , vol.284 , pp. 9558-9565
    • Huertas, P.1    Jackson, S.P.2
  • 48
  • 49
    • 35948932274 scopus 로고    scopus 로고
    • Meiotic recombination
    • (Aguilera A & Rothstein R, eds). Springer-Verlag, Heidelberg.
    • Hunter N (2006) Meiotic recombination. Molecular Genetics of Recombination, (Aguilera A & Rothstein R, eds), pp. 381-442. Springer-Verlag, Heidelberg.
    • (2006) Molecular Genetics of Recombination , pp. 381-442
    • Hunter, N.1
  • 50
    • 7244220162 scopus 로고    scopus 로고
    • DNA end resection, homologous recombination and DNA damage checkpoint activation require CDK1
    • Ira G, Pellicioli A, Balijja A et al. (2004) DNA end resection, homologous recombination and DNA damage checkpoint activation require CDK1. Nature 431: 1011-1017.
    • (2004) Nature , vol.431 , pp. 1011-1017
    • Ira, G.1    Pellicioli, A.2    Balijja, A.3
  • 51
    • 59949092789 scopus 로고    scopus 로고
    • A recombination execution checkpoint regulates the choice of homologous recombination pathway during DNA double-strand break repair
    • Jain S, Sugawara N, Lydeard J, Vaze M, Tanguy Le Gac N & Haber JE (2009) A recombination execution checkpoint regulates the choice of homologous recombination pathway during DNA double-strand break repair. Genes Dev 23: 291-303.
    • (2009) Genes Dev , vol.23 , pp. 291-303
    • Jain, S.1    Sugawara, N.2    Lydeard, J.3    Vaze, M.4    Tanguy Le Gac, N.5    Haber, J.E.6
  • 52
    • 33749535603 scopus 로고    scopus 로고
    • Co-evolution of transcriptional and post-translational cell-cycle regulation
    • Jensen LJ, Jensen TS, de Lichtenberg U, Brunak S & Bork P (2006) Co-evolution of transcriptional and post-translational cell-cycle regulation. Nature 443: 594-597.
    • (2006) Nature , vol.443 , pp. 594-597
    • Jensen, L.J.1    Jensen, T.S.2    de Lichtenberg, U.3    Brunak, S.4    Bork, P.5
  • 53
    • 0029164962 scopus 로고
    • Functional differences and interactions among the putative RecA homologs Rad51, Rad55, and Rad57
    • Johnson RD & Symington LS (1995) Functional differences and interactions among the putative RecA homologs Rad51, Rad55, and Rad57. Mol Cell Biol 15: 4843-4850.
    • (1995) Mol Cell Biol , vol.15 , pp. 4843-4850
    • Johnson, R.D.1    Symington, L.S.2
  • 54
    • 0029054202 scopus 로고
    • The DNA repair genes RAD54 and UNG1 are cell cycle regulated in budding yeast but MCB promoter elements have no essential role in the DNA damage response
    • Johnston LH & Johnson AL (1995) The DNA repair genes RAD54 and UNG1 are cell cycle regulated in budding yeast but MCB promoter elements have no essential role in the DNA damage response. Nucleic Acids Res 23: 2147-2152.
    • (1995) Nucleic Acids Res , vol.23 , pp. 2147-2152
    • Johnston, L.H.1    Johnson, A.L.2
  • 55
    • 0027509706 scopus 로고
    • Replication-dependent sister chromatid recombination in rad1 mutants of Saccharomyces cerevisiae
    • Kadyk LC & Hartwell LH (1993) Replication-dependent sister chromatid recombination in rad1 mutants of Saccharomyces cerevisiae. Genetics 133: 469-487.
    • (1993) Genetics , vol.133 , pp. 469-487
    • Kadyk, L.C.1    Hartwell, L.H.2
  • 56
    • 79960243461 scopus 로고    scopus 로고
    • Phenylbutyrate inhibits homologous recombination induced by camptothecin and methyl methanesulfonate
    • Kaiser GS, Germann SM, Westergaard T & Lisby M (2011) Phenylbutyrate inhibits homologous recombination induced by camptothecin and methyl methanesulfonate. Mutat Res 713: 64-75.
    • (2011) Mutat Res , vol.713 , pp. 64-75
    • Kaiser, G.S.1    Germann, S.M.2    Westergaard, T.3    Lisby, M.4
  • 57
    • 0036021357 scopus 로고    scopus 로고
    • Enhancement of Saccharomyces cerevisiae end-joining efficiency by cell growth stage but not by impairment of recombination
    • Karathanasis E & Wilson TE (2002) Enhancement of Saccharomyces cerevisiae end-joining efficiency by cell growth stage but not by impairment of recombination. Genetics 161: 1015-1027.
    • (2002) Genetics , vol.161 , pp. 1015-1027
    • Karathanasis, E.1    Wilson, T.E.2
  • 58
    • 34948874900 scopus 로고    scopus 로고
    • Dual chromatin remodeling roles for RSC during DNA double strand break induction and repair at the yeast MAT locus
    • Kent NA, Chambers AL & Downs JA (2007) Dual chromatin remodeling roles for RSC during DNA double strand break induction and repair at the yeast MAT locus. J Biol Chem 282: 27693-27701.
    • (2007) J Biol Chem , vol.282 , pp. 27693-27701
    • Kent, N.A.1    Chambers, A.L.2    Downs, J.A.3
  • 59
    • 34447532525 scopus 로고    scopus 로고
    • Heterochromatin is refractory to gamma-H2AX modification in yeast and mammals
    • Kim JA, Kruhlak M, Dotiwala F, Nussenzweig A & Haber JE (2007) Heterochromatin is refractory to gamma-H2AX modification in yeast and mammals. J Cell Biol 178: 209-218.
    • (2007) J Cell Biol , vol.178 , pp. 209-218
    • Kim, J.A.1    Kruhlak, M.2    Dotiwala, F.3    Nussenzweig, A.4    Haber, J.E.5
  • 60
    • 0027501142 scopus 로고
    • A role for the transcription factors Mbp1 and Swi4 in progression from G1 to S phase
    • [see comments].
    • Koch C, Moll T, Neuberg M, Ahorn H & Nasmyth K (1993) A role for the transcription factors Mbp1 and Swi4 in progression from G1 to S phase [see comments]. Science 261: 1551-1557.
    • (1993) Science , vol.261 , pp. 1551-1557
    • Koch, C.1    Moll, T.2    Neuberg, M.3    Ahorn, H.4    Nasmyth, K.5
  • 61
    • 0030062491 scopus 로고    scopus 로고
    • Switching transcription on and off during the yeast cell cycle: Cln/Cdc28 kinases activate bound transcription factor SBF (Swi4/Swi6) at start, whereas Clb/Cdc28 kinases displace it from the promoter in G2
    • Koch C, Schleiffer A, Ammerer G & Nasmyth K (1996) Switching transcription on and off during the yeast cell cycle: Cln/Cdc28 kinases activate bound transcription factor SBF (Swi4/Swi6) at start, whereas Clb/Cdc28 kinases displace it from the promoter in G2. Genes Dev 10: 129-141.
    • (1996) Genes Dev , vol.10 , pp. 129-141
    • Koch, C.1    Schleiffer, A.2    Ammerer, G.3    Nasmyth, K.4
  • 62
    • 0032579182 scopus 로고    scopus 로고
    • Mutations of the CDC28 gene and the radiation sensitivity of Saccharomyces cerevisiae
    • Koltovaya NA, Arman IP & Devin AB (1998) Mutations of the CDC28 gene and the radiation sensitivity of Saccharomyces cerevisiae. Yeast 14: 133-146.
    • (1998) Yeast , vol.14 , pp. 133-146
    • Koltovaya, N.A.1    Arman, I.P.2    Devin, A.B.3
  • 63
    • 67649845784 scopus 로고    scopus 로고
    • Systematic identification of cell cycle-dependent yeast nucleocytoplasmic shuttling proteins by prediction of composite motifs
    • Kosugi S, Hasebe M, Tomita M & Yanagawa H (2009) Systematic identification of cell cycle-dependent yeast nucleocytoplasmic shuttling proteins by prediction of composite motifs. P Natl Acad Sci USA 106: 10171-10176.
    • (2009) P Natl Acad Sci USA , vol.106 , pp. 10171-10176
    • Kosugi, S.1    Hasebe, M.2    Tomita, M.3    Yanagawa, H.4
  • 64
    • 0037131404 scopus 로고    scopus 로고
    • Interaction with Rad51 is indispensable for recombination mediator function of Rad52
    • Krejci L, Song B, Bussen W, Rothstein R, Mortensen UH & Sung P (2002) Interaction with Rad51 is indispensable for recombination mediator function of Rad52. J Biol Chem 277: 40132-40141.
    • (2002) J Biol Chem , vol.277 , pp. 40132-40141
    • Krejci, L.1    Song, B.2    Bussen, W.3    Rothstein, R.4    Mortensen, U.H.5    Sung, P.6
  • 66
    • 0034733693 scopus 로고    scopus 로고
    • Damage-induced recombination in the yeast Saccharomyces cerevisiae
    • Kupiec M (2000) Damage-induced recombination in the yeast Saccharomyces cerevisiae. Mutat Res 451: 91-105.
    • (2000) Mutat Res , vol.451 , pp. 91-105
    • Kupiec, M.1
  • 67
    • 39549102855 scopus 로고    scopus 로고
    • Rad52 promotes postinvasion steps of meiotic double-strand-break repair
    • Lao JP, Oh SD, Shinohara M, Shinohara A & Hunter N (2008) Rad52 promotes postinvasion steps of meiotic double-strand-break repair. Mol Cell 29: 517-524.
    • (2008) Mol Cell , vol.29 , pp. 517-524
    • Lao, J.P.1    Oh, S.D.2    Shinohara, M.3    Shinohara, A.4    Hunter, N.5
  • 68
    • 0032493889 scopus 로고    scopus 로고
    • Saccharomyces Ku70, Mre11/Rad50 and RPA proteins regulate adaptation to G2/M arrest after DNA damage
    • Lee SE, Moore JK, Holmes A, Umezu K, Kolodner RD & Haber JE (1998) Saccharomyces Ku70, Mre11/Rad50 and RPA proteins regulate adaptation to G2/M arrest after DNA damage. Cell 94: 399-409.
    • (1998) Cell , vol.94 , pp. 399-409
    • Lee, S.E.1    Moore, J.K.2    Holmes, A.3    Umezu, K.4    Kolodner, R.D.5    Haber, J.E.6
  • 69
    • 59649102253 scopus 로고    scopus 로고
    • RAD54 controls access to the invading 3'-OH end after RAD51-mediated DNA strand invasion in homologous recombination in Saccharomyces cerevisiae
    • Li X & Heyer WD (2009) RAD54 controls access to the invading 3'-OH end after RAD51-mediated DNA strand invasion in homologous recombination in Saccharomyces cerevisiae. Nucleic Acids Res 37: 638-646.
    • (2009) Nucleic Acids Res , vol.37 , pp. 638-646
    • Li, X.1    Heyer, W.D.2
  • 70
    • 0035902544 scopus 로고    scopus 로고
    • Rad52 forms DNA repair and recombination centers during S phase
    • Lisby M, Rothstein R & Mortensen UH (2001) Rad52 forms DNA repair and recombination centers during S phase. P Natl Acad Sci USA 98: 8276-8282.
    • (2001) P Natl Acad Sci USA , vol.98 , pp. 8276-8282
    • Lisby, M.1    Rothstein, R.2    Mortensen, U.H.3
  • 71
    • 10344240414 scopus 로고    scopus 로고
    • Chromosome fragmentation after induction of a double-strand break is an active process prevented by the RMX repair complex
    • Lobachev K, Vitriol E, Stemple J, Resnick MA & Bloom K (2004) Chromosome fragmentation after induction of a double-strand break is an active process prevented by the RMX repair complex. Curr Biol 14: 2107-2112.
    • (2004) Curr Biol , vol.14 , pp. 2107-2112
    • Lobachev, K.1    Vitriol, E.2    Stemple, J.3    Resnick, M.A.4    Bloom, K.5
  • 72
    • 14544270984 scopus 로고    scopus 로고
    • Cyclin specificity in the phosphorylation of cyclin-dependent kinase substrates
    • Loog M & Morgan DO (2005) Cyclin specificity in the phosphorylation of cyclin-dependent kinase substrates. Nature 434: 104-108.
    • (2005) Nature , vol.434 , pp. 104-108
    • Loog, M.1    Morgan, D.O.2
  • 73
    • 0034976997 scopus 로고    scopus 로고
    • Early cell cycle box-mediated transcription of CLN3 and SWI4 contributes to the proper timing of the G(1)-to-S transition in budding yeast
    • MacKay VL, Mai B, Waters L & Breeden LL (2001) Early cell cycle box-mediated transcription of CLN3 and SWI4 contributes to the proper timing of the G(1)-to-S transition in budding yeast. Mol Cell Biol 21: 4140-4148.
    • (2001) Mol Cell Biol , vol.21 , pp. 4140-4148
    • MacKay, V.L.1    Mai, B.2    Waters, L.3    Breeden, L.L.4
  • 74
    • 0036136341 scopus 로고    scopus 로고
    • Characterization of the ECB binding complex responsible for the M/G(1)-specific transcription of CLN3 and SWI4
    • Mai B, Miles S & Breeden LL (2002) Characterization of the ECB binding complex responsible for the M/G(1)-specific transcription of CLN3 and SWI4. Mol Cell Biol 22: 430-441.
    • (2002) Mol Cell Biol , vol.22 , pp. 430-441
    • Mai, B.1    Miles, S.2    Breeden, L.L.3
  • 75
    • 80053544629 scopus 로고    scopus 로고
    • Regulatory control of the resolution of DNA recombination intermediates during meiosis and mitosis
    • Matos J, Blanco MG, Maslen S, Skehel JM & West SC (2011) Regulatory control of the resolution of DNA recombination intermediates during meiosis and mitosis. Cell 147: 158-172.
    • (2011) Cell , vol.147 , pp. 158-172
    • Matos, J.1    Blanco, M.G.2    Maslen, S.3    Skehel, J.M.4    West, S.C.5
  • 76
    • 84861481360 scopus 로고    scopus 로고
    • Cyclin-dependent kinase-dependent phosphorylation of Lif1 and Sae2 controls imprecise nonhomologous end joining accompanied by double-strand break resection
    • Matsuzaki K, Terasawa M, Iwasaki D, Higashide M & Shinohara M (2012) Cyclin-dependent kinase-dependent phosphorylation of Lif1 and Sae2 controls imprecise nonhomologous end joining accompanied by double-strand break resection. Genes Cells 17: 473-493.
    • (2012) Genes Cells , vol.17 , pp. 473-493
    • Matsuzaki, K.1    Terasawa, M.2    Iwasaki, D.3    Higashide, M.4    Shinohara, M.5
  • 77
    • 0030977093 scopus 로고    scopus 로고
    • A novel Mcm1-dependent element in the SWI4, CLN3, CDC6, and CDC47 promoters activates M/G1-specific transcription
    • McInerny CJ, Partridge JF, Mikesell GE, Creemer DP & Breeden LL (1997) A novel Mcm1-dependent element in the SWI4, CLN3, CDC6, and CDC47 promoters activates M/G1-specific transcription. Genes Dev 11: 1277-1288.
    • (1997) Genes Dev , vol.11 , pp. 1277-1288
    • McInerny, C.J.1    Partridge, J.F.2    Mikesell, G.E.3    Creemer, D.P.4    Breeden, L.L.5
  • 78
    • 0031737085 scopus 로고    scopus 로고
    • Regulation of Cdc28 cyclin-dependent protein kinase activity during the cell cycle of the yeast Saccharomyces cerevisiae
    • Mendenhall MD & Hodge AE (1998) Regulation of Cdc28 cyclin-dependent protein kinase activity during the cell cycle of the yeast Saccharomyces cerevisiae. Microbiol Mol Biol Rev 62: 1191-1243.
    • (1998) Microbiol Mol Biol Rev , vol.62 , pp. 1191-1243
    • Mendenhall, M.D.1    Hodge, A.E.2
  • 79
    • 53649104599 scopus 로고    scopus 로고
    • Sae2, Exo1 and Sgs1 collaborate in DNA double-strand break processing
    • Mimitou EP & Symington LS (2008) Sae2, Exo1 and Sgs1 collaborate in DNA double-strand break processing. Nature 455: 770-774.
    • (2008) Nature , vol.455 , pp. 770-774
    • Mimitou, E.P.1    Symington, L.S.2
  • 80
    • 77957805302 scopus 로고    scopus 로고
    • Ku prevents Exo1 and Sgs1-dependent resection of DNA ends in the absence of a functional MRX complex or Sae2
    • Mimitou EP & Symington LS (2010) Ku prevents Exo1 and Sgs1-dependent resection of DNA ends in the absence of a functional MRX complex or Sae2. EMBO J 29: 3358-3369.
    • (2010) EMBO J , vol.29 , pp. 3358-3369
    • Mimitou, E.P.1    Symington, L.S.2
  • 81
    • 79951857925 scopus 로고    scopus 로고
    • DNA end resection-unraveling the tail
    • Mimitou EP & Symington LS (2011) DNA end resection-unraveling the tail. DNA Repair (Amst) 10: 344-348.
    • (2011) DNA Repair (Amst) , vol.10 , pp. 344-348
    • Mimitou, E.P.1    Symington, L.S.2
  • 82
    • 84860517399 scopus 로고    scopus 로고
    • Increased chromosome mobility facilitates homology search during recombination
    • Mine-Hattab J & Rothstein R (2012) Increased chromosome mobility facilitates homology search during recombination. Nat Cell Biol 14: 510-517.
    • (2012) Nat Cell Biol , vol.14 , pp. 510-517
    • Mine-Hattab, J.1    Rothstein, R.2
  • 84
    • 0035148955 scopus 로고    scopus 로고
    • Requirement for three novel protein complexes in the absence of the Sgs1 DNA helicase in Saccharomyces cerevisiae
    • Mullen JR, Kaliraman V, Ibrahim SS & Brill SJ (2001) Requirement for three novel protein complexes in the absence of the Sgs1 DNA helicase in Saccharomyces cerevisiae. Genetics 157: 103-118.
    • (2001) Genetics , vol.157 , pp. 103-118
    • Mullen, J.R.1    Kaliraman, V.2    Ibrahim, S.S.3    Brill, S.J.4
  • 86
    • 0000536643 scopus 로고
    • DNA topoisomerase-targeting antitumor drugs can be studied in yeast
    • Nitiss J & Wang JC (1988) DNA topoisomerase-targeting antitumor drugs can be studied in yeast. P Natl Acad Sci USA 85: 7501-7505.
    • (1988) P Natl Acad Sci USA , vol.85 , pp. 7501-7505
    • Nitiss, J.1    Wang, J.C.2
  • 87
    • 28544447826 scopus 로고    scopus 로고
    • Mutations of the Yku80 C terminus and Xrs2 FHA domain specifically block yeast nonhomologous end joining
    • Palmbos PL, Daley JM & Wilson TE (2005) Mutations of the Yku80 C terminus and Xrs2 FHA domain specifically block yeast nonhomologous end joining. Mol Cell Biol 25: 10782-10790.
    • (2005) Mol Cell Biol , vol.25 , pp. 10782-10790
    • Palmbos, P.L.1    Daley, J.M.2    Wilson, T.E.3
  • 88
    • 0033607640 scopus 로고    scopus 로고
    • Single strand DNA binding and annealing activities in the yeast recombination factor Rad59
    • Petukhova G, Stratton SA & Sung P (1999) Single strand DNA binding and annealing activities in the yeast recombination factor Rad59. J Biol Chem 274: 33839-33842.
    • (1999) J Biol Chem , vol.274 , pp. 33839-33842
    • Petukhova, G.1    Stratton, S.A.2    Sung, P.3
  • 89
    • 0034654399 scopus 로고    scopus 로고
    • The KEN box: an APC recognition signal distinct from the D box targeted by Cdh1
    • Pfleger CM & Kirschner MW (2000) The KEN box: an APC recognition signal distinct from the D box targeted by Cdh1. Genes Dev 14: 655-665.
    • (2000) Genes Dev , vol.14 , pp. 655-665
    • Pfleger, C.M.1    Kirschner, M.W.2
  • 90
    • 58149494717 scopus 로고    scopus 로고
    • Yeast Mph1 helicase dissociates Rad51-made D-loops: implications for crossover control in mitotic recombination
    • Prakash R, Satory D, Dray E et al. (2009) Yeast Mph1 helicase dissociates Rad51-made D-loops: implications for crossover control in mitotic recombination. Genes Dev 23: 67-79.
    • (2009) Genes Dev , vol.23 , pp. 67-79
    • Prakash, R.1    Satory, D.2    Dray, E.3
  • 91
    • 0036896774 scopus 로고    scopus 로고
    • Conserved homeodomain proteins interact with MADS box protein Mcm1 to restrict ECB-dependent transcription to the M/G1 phase of the cell cycle
    • Pramila T, Miles S, GuhaThakurta D, Jemiolo D & Breeden LL (2002) Conserved homeodomain proteins interact with MADS box protein Mcm1 to restrict ECB-dependent transcription to the M/G1 phase of the cell cycle. Genes Dev 16: 3034-3045.
    • (2002) Genes Dev , vol.16 , pp. 3034-3045
    • Pramila, T.1    Miles, S.2    GuhaThakurta, D.3    Jemiolo, D.4    Breeden, L.L.5
  • 92
    • 0025584623 scopus 로고
    • PEST sequences are signals for rapid intracellular proteolysis
    • Rechsteiner M (1990) PEST sequences are signals for rapid intracellular proteolysis. Semin Cell Biol 1: 433-440.
    • (1990) Semin Cell Biol , vol.1 , pp. 433-440
    • Rechsteiner, M.1
  • 93
    • 0023925454 scopus 로고
    • Interactions between deoxyribonucleotide and DNA synthesis
    • Reichard P (1988) Interactions between deoxyribonucleotide and DNA synthesis. Annu Rev Biochem 57: 349-374.
    • (1988) Annu Rev Biochem , vol.57 , pp. 349-374
    • Reichard, P.1
  • 94
    • 0026445771 scopus 로고
    • Cyclin-B homologs in Saccharomyces cerevisiae function in S phase and in G2
    • Richardson H, Lew DJ, Henze M, Sugimoto K & Reed SI (1992) Cyclin-B homologs in Saccharomyces cerevisiae function in S phase and in G2. Genes Dev 6: 2021-2034.
    • (1992) Genes Dev , vol.6 , pp. 2021-2034
    • Richardson, H.1    Lew, D.J.2    Henze, M.3    Sugimoto, K.4    Reed, S.I.5
  • 95
    • 79952270884 scopus 로고    scopus 로고
    • HDACs link the DNA damage response, processing of double-strand breaks and autophagy
    • Robert T, Vanoli F, Chiolo I et al. (2011) HDACs link the DNA damage response, processing of double-strand breaks and autophagy. Nature 471: 74-79.
    • (2011) Nature , vol.471 , pp. 74-79
    • Robert, T.1    Vanoli, F.2    Chiolo, I.3
  • 96
    • 77649222970 scopus 로고    scopus 로고
    • Cdk1 targets Srs2 to complete synthesis-dependent strand annealing and to promote recombinational repair
    • Saponaro M, Callahan D, Zheng X, Krejci L, Haber JE, Klein HL & Liberi G (2010) Cdk1 targets Srs2 to complete synthesis-dependent strand annealing and to promote recombinational repair. PLoS Genet 6: e1000858.
    • (2010) PLoS Genet , vol.6
    • Saponaro, M.1    Callahan, D.2    Zheng, X.3    Krejci, L.4    Haber, J.E.5    Klein, H.L.6    Liberi, G.7
  • 97
    • 0027220020 scopus 로고
    • CLB5 and CLB6, a new pair of B cyclins involved in DNA replication in Saccharomyces cerevisiae
    • Schwob E & Nasmyth K (1993) CLB5 and CLB6, a new pair of B cyclins involved in DNA replication in Saccharomyces cerevisiae. Genes Dev 7: 1160-1175.
    • (1993) Genes Dev , vol.7 , pp. 1160-1175
    • Schwob, E.1    Nasmyth, K.2
  • 98
    • 0028114987 scopus 로고
    • The B-type cyclin kinase inhibitor p40SIC1 controls the G1 to S transition in S. cerevisiae
    • [see comments].
    • Schwob E, Bohm T, Mendenhall MD & Nasmyth K (1994) The B-type cyclin kinase inhibitor p40SIC1 controls the G1 to S transition in S. cerevisiae [see comments]. Cell 79: 233-244.
    • (1994) Cell , vol.79 , pp. 233-244
    • Schwob, E.1    Bohm, T.2    Mendenhall, M.D.3    Nasmyth, K.4
  • 99
    • 18144423533 scopus 로고    scopus 로고
    • The yeast chromatin remodeler RSC complex facilitates end joining repair of DNA double-strand breaks
    • Shim EY, Ma JL, Oum JH, Yanez Y & Lee SE (2005) The yeast chromatin remodeler RSC complex facilitates end joining repair of DNA double-strand breaks. Mol Cell Biol 25: 3934-3944.
    • (2005) Mol Cell Biol , vol.25 , pp. 3934-3944
    • Shim, E.Y.1    Ma, J.L.2    Oum, J.H.3    Yanez, Y.4    Lee, S.E.5
  • 100
    • 0032556898 scopus 로고    scopus 로고
    • Stimulation by Rad52 of yeast Rad51-mediated recombination
    • Shinohara A & Ogawa T (1998) Stimulation by Rad52 of yeast Rad51-mediated recombination. Nature 391: 404-407.
    • (1998) Nature , vol.391 , pp. 404-407
    • Shinohara, A.1    Ogawa, T.2
  • 101
    • 79551562850 scopus 로고    scopus 로고
    • Chromatin dynamics during repair of chromosomal DNA double-strand breaks
    • Sinha M & Peterson CL (2009) Chromatin dynamics during repair of chromosomal DNA double-strand breaks. Epigenomics 1: 371-385.
    • (2009) Epigenomics , vol.1 , pp. 371-385
    • Sinha, M.1    Peterson, C.L.2
  • 102
    • 0035954251 scopus 로고    scopus 로고
    • Sister chromatid cohesion is required for postreplicative double-strand break repair in Saccharomyces cerevisiae
    • Sjogren C & Nasmyth K (2001) Sister chromatid cohesion is required for postreplicative double-strand break repair in Saccharomyces cerevisiae. Curr Biol 11: 991-995.
    • (2001) Curr Biol , vol.11 , pp. 991-995
    • Sjogren, C.1    Nasmyth, K.2
  • 104
    • 0035902510 scopus 로고    scopus 로고
    • Rad54 protein stimulates the postsynaptic phase of Rad51 protein-mediated DNA strand exchange
    • Solinger JA & Heyer WD (2001) Rad54 protein stimulates the postsynaptic phase of Rad51 protein-mediated DNA strand exchange. P Natl Acad Sci USA 98: 8447-8453.
    • (2001) P Natl Acad Sci USA , vol.98 , pp. 8447-8453
    • Solinger, J.A.1    Heyer, W.D.2
  • 106
    • 0026530911 scopus 로고
    • Characterization of double-strand break-induced recombination: homology requirements and single-stranded DNA formation
    • Sugawara N & Haber JE (1992) Characterization of double-strand break-induced recombination: homology requirements and single-stranded DNA formation. Mol Cell Biol 12: 563-575.
    • (1992) Mol Cell Biol , vol.12 , pp. 563-575
    • Sugawara, N.1    Haber, J.E.2
  • 107
    • 0041903834 scopus 로고    scopus 로고
    • In vivo roles of Rad52, Rad54, and Rad55 proteins in Rad51-mediated recombination
    • Sugawara N, Wang X & Haber JE (2003) In vivo roles of Rad52, Rad54, and Rad55 proteins in Rad51-mediated recombination. Mol Cell 12: 209-219.
    • (2003) Mol Cell , vol.12 , pp. 209-219
    • Sugawara, N.1    Wang, X.2    Haber, J.E.3
  • 108
    • 0037199924 scopus 로고    scopus 로고
    • Rad52 protein associates with replication protein A (RPA)-single-stranded DNA to accelerate Rad51-mediated displacement of RPA and presynaptic complex formation
    • Sugiyama T & Kowalczykowski SC (2002) Rad52 protein associates with replication protein A (RPA)-single-stranded DNA to accelerate Rad51-mediated displacement of RPA and presynaptic complex formation. J Biol Chem 277: 31663-31672.
    • (2002) J Biol Chem , vol.277 , pp. 31663-31672
    • Sugiyama, T.1    Kowalczykowski, S.C.2
  • 109
    • 0031004885 scopus 로고    scopus 로고
    • A single-stranded DNA-binding protein is needed for efficient presynaptic complex formation by the Saccharomyces cerevisiae Rad51 protein
    • Sugiyama T, Zaitseva EM & Kowalczykowski SC (1997) A single-stranded DNA-binding protein is needed for efficient presynaptic complex formation by the Saccharomyces cerevisiae Rad51 protein. J Biol Chem 272: 7940-7945.
    • (1997) J Biol Chem , vol.272 , pp. 7940-7945
    • Sugiyama, T.1    Zaitseva, E.M.2    Kowalczykowski, S.C.3
  • 110
    • 0032568595 scopus 로고    scopus 로고
    • DNA annealing by RAD52 protein is stimulated by specific interaction with the complex of replication protein A and single-stranded DNA
    • Sugiyama T, New JH & Kowalczykowski SC (1998) DNA annealing by RAD52 protein is stimulated by specific interaction with the complex of replication protein A and single-stranded DNA. P Natl Acad Sci USA 95: 6049-6054.
    • (1998) P Natl Acad Sci USA , vol.95 , pp. 6049-6054
    • Sugiyama, T.1    New, J.H.2    Kowalczykowski, S.C.3
  • 111
    • 0030666945 scopus 로고    scopus 로고
    • Function of yeast Rad52 protein as a mediator between replication protein A and the Rad51 recombinase
    • Sung P (1997a) Function of yeast Rad52 protein as a mediator between replication protein A and the Rad51 recombinase. J Biol Chem 272: 28194-28197.
    • (1997) J Biol Chem , vol.272 , pp. 28194-28197
    • Sung, P.1
  • 112
    • 0030995362 scopus 로고    scopus 로고
    • Yeast Rad55 and Rad57 proteins form a heterodimer that functions with replication protein A to promote DNA strand exchange by Rad51 recombinase
    • Sung P (1997b) Yeast Rad55 and Rad57 proteins form a heterodimer that functions with replication protein A to promote DNA strand exchange by Rad51 recombinase. Genes Dev 11: 1111-1121.
    • (1997) Genes Dev , vol.11 , pp. 1111-1121
    • Sung, P.1
  • 114
    • 84866109279 scopus 로고    scopus 로고
    • Structure and function in the budding yeast nucleus
    • Taddei A & Gasser SM (2012) Structure and function in the budding yeast nucleus. Genetics 192: 107-129.
    • (2012) Genetics , vol.192 , pp. 107-129
    • Taddei, A.1    Gasser, S.M.2
  • 115
    • 84865715286 scopus 로고    scopus 로고
    • Dissecting DNA damage response pathways by analysing protein localization and abundance changes during DNA replication stress
    • Tkach JM, Yimit A, Lee AY et al. (2012) Dissecting DNA damage response pathways by analysing protein localization and abundance changes during DNA replication stress. Nat Cell Biol 14: 966-976.
    • (2012) Nat Cell Biol , vol.14 , pp. 966-976
    • Tkach, J.M.1    Yimit, A.2    Lee, A.Y.3
  • 117
    • 27844607415 scopus 로고    scopus 로고
    • Chromatin remodelling at a DNA double-strand break site in Saccharomyces cerevisiae
    • Tsukuda T, Fleming AB, Nickoloff JA & Osley MA (2005) Chromatin remodelling at a DNA double-strand break site in Saccharomyces cerevisiae. Nature 438: 379-383.
    • (2005) Nature , vol.438 , pp. 379-383
    • Tsukuda, T.1    Fleming, A.B.2    Nickoloff, J.A.3    Osley, M.A.4
  • 118
    • 59149092573 scopus 로고    scopus 로고
    • INO80-dependent chromatin remodeling regulates early and late stages of mitotic homologous recombination
    • Tsukuda T, Lo YC, Krishna S, Sterk R, Osley MA & Nickoloff JA (2009) INO80-dependent chromatin remodeling regulates early and late stages of mitotic homologous recombination. DNA Repair (Amst) 8: 360-369.
    • (2009) DNA Repair (Amst) , vol.8 , pp. 360-369
    • Tsukuda, T.1    Lo, Y.C.2    Krishna, S.3    Sterk, R.4    Osley, M.A.5    Nickoloff, J.A.6
  • 119
    • 0027173154 scopus 로고
    • Comparison of the Saccharomyces cerevisiae G1 cyclins: Cln3 may be an upstream activator of Cln1, Cln2 and other cyclins
    • Tyers M, Tokiwa G & Futcher B (1993) Comparison of the Saccharomyces cerevisiae G1 cyclins: Cln3 may be an upstream activator of Cln1, Cln2 and other cyclins. EMBO J 12: 1955-1968.
    • (1993) EMBO J , vol.12 , pp. 1955-1968
    • Tyers, M.1    Tokiwa, G.2    Futcher, B.3
  • 120
    • 3543045545 scopus 로고    scopus 로고
    • Role of DNA replication proteins in double-strand break-induced recombination in Saccharomyces cerevisiae
    • Wang X, Ira G, Tercero JA, Holmes AM, Diffley JF & Haber JE (2004) Role of DNA replication proteins in double-strand break-induced recombination in Saccharomyces cerevisiae. Mol Cell Biol 24: 6891-6899.
    • (2004) Mol Cell Biol , vol.24 , pp. 6891-6899
    • Wang, X.1    Ira, G.2    Tercero, J.A.3    Holmes, A.M.4    Diffley, J.F.5    Haber, J.E.6
  • 121
    • 84865105439 scopus 로고    scopus 로고
    • Everything you ever wanted to know about Saccharomyces cerevisiae telomeres: beginning to end
    • Wellinger RJ & Zakian VA (2012) Everything you ever wanted to know about Saccharomyces cerevisiae telomeres: beginning to end. Genetics 191: 1073-1105.
    • (2012) Genetics , vol.191 , pp. 1073-1105
    • Wellinger, R.J.1    Zakian, V.A.2
  • 122
    • 84866170589 scopus 로고    scopus 로고
    • Chemical genetics reveals a specific requirement for Cdk2 activity in the DNA damage response and identifies Nbs1 as a Cdk2 substrate in human cells
    • Wohlbold L, Merrick KA, De S et al. (2012) Chemical genetics reveals a specific requirement for Cdk2 activity in the DNA damage response and identifies Nbs1 as a Cdk2 substrate in human cells. PLoS Genet 8: e1002935.
    • (2012) PLoS Genet , vol.8
    • Wohlbold, L.1    Merrick, K.A.2    De, S.3
  • 123
    • 0347987856 scopus 로고    scopus 로고
    • The Bloom's syndrome helicase suppresses crossing over during homologous recombination
    • Wu L & Hickson ID (2003) The Bloom's syndrome helicase suppresses crossing over during homologous recombination. Nature 426: 870-874.
    • (2003) Nature , vol.426 , pp. 870-874
    • Wu, L.1    Hickson, I.D.2
  • 124
    • 0030800629 scopus 로고    scopus 로고
    • Rules of donor preference in Saccharomyces mating-type gene switching revealed by a competition assay involving two types of recombination
    • Wu X, Wu C & Haber JE (1997) Rules of donor preference in Saccharomyces mating-type gene switching revealed by a competition assay involving two types of recombination. Genetics 147: 399-407.
    • (1997) Genetics , vol.147 , pp. 399-407
    • Wu, X.1    Wu, C.2    Haber, J.E.3
  • 125
    • 33744962417 scopus 로고    scopus 로고
    • DNA annealing mediated by Rad52 and Rad59 proteins
    • Wu Y, Sugiyama T & Kowalczykowski SC (2006) DNA annealing mediated by Rad52 and Rad59 proteins. J Biol Chem 281: 15441-15449.
    • (2006) J Biol Chem , vol.281 , pp. 15441-15449
    • Wu, Y.1    Sugiyama, T.2    Kowalczykowski, S.C.3
  • 126
    • 45149104841 scopus 로고    scopus 로고
    • Recruitment and dissociation of nonhomologous end joining proteins at a DNA double-strand break in Saccharomyces cerevisiae
    • Wu D, Topper LM & Wilson TE (2008) Recruitment and dissociation of nonhomologous end joining proteins at a DNA double-strand break in Saccharomyces cerevisiae. Genetics 178: 1237-1249.
    • (2008) Genetics , vol.178 , pp. 1237-1249
    • Wu, D.1    Topper, L.M.2    Wilson, T.E.3
  • 128
    • 70149088145 scopus 로고    scopus 로고
    • Regulation of repair choice: Cdk1 suppresses recruitment of end joining factors at DNA breaks
    • Zhang Y, Shim EY, Davis M & Lee SE (2009) Regulation of repair choice: Cdk1 suppresses recruitment of end joining factors at DNA breaks. DNA Repair (Amst) 8: 1235-1241.
    • (2009) DNA Repair (Amst) , vol.8 , pp. 1235-1241
    • Zhang, Y.1    Shim, E.Y.2    Davis, M.3    Lee, S.E.4
  • 129
    • 51549095956 scopus 로고    scopus 로고
    • Sgs1 helicase and two nucleases Dna2 and Exo1 resect DNA double-strand break ends
    • Zhu Z, Chung WH, Shim EY, Lee SE & Ira G (2008) Sgs1 helicase and two nucleases Dna2 and Exo1 resect DNA double-strand break ends. Cell 134: 981-994.
    • (2008) Cell , vol.134 , pp. 981-994
    • Zhu, Z.1    Chung, W.H.2    Shim, E.Y.3    Lee, S.E.4    Ira, G.5
  • 130
    • 46949098616 scopus 로고    scopus 로고
    • Break dosage, cell cycle stage and DNA replication influence DNA double strand break response
    • Zierhut C & Diffley JF (2008) Break dosage, cell cycle stage and DNA replication influence DNA double strand break response. EMBO J 27: 1875-1885.
    • (2008) EMBO J , vol.27 , pp. 1875-1885
    • Zierhut, C.1    Diffley, J.F.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.