메뉴 건너뛰기




Volumn 6, Issue 7, 2010, Pages 1-17

Rad3ATR decorates critical chromosomal domains with γH2A to protect genome integrity during S-phase in fission yeast

Author keywords

[No Author keywords available]

Indexed keywords

ATR PROTEIN; CHECKPOINT KINASE RAD3; CLR4 HISTONE METHYLTRANSFERASE; DOUBLE STRANDED DNA; FUNGAL PROTEIN; GAMMA HISTONE H2A; HISTONE H2A; HISTONE METHYLTRANSFERASE; PROTEIN BRC1; RIBOSOME RNA; UNCLASSIFIED DRUG; BRC1 PROTEIN, S POMBE; CELL CYCLE PROTEIN; HELICASE; HISTONE; PROTEIN KINASE; RAD3 PROTEIN, S POMBE; RQH1 PROTEIN, S POMBE; SCHIZOSACCHAROMYCES POMBE PROTEIN;

EID: 77957344278     PISSN: 15537390     EISSN: 15537404     Source Type: Journal    
DOI: 10.1371/journal.pgen.1001032     Document Type: Article
Times cited : (71)

References (105)
  • 1
    • 39449096135 scopus 로고    scopus 로고
    • Genome instability: A mechanistic view of its causes and consequences
    • Aguilera A, Gomez-Gonzalez B (2008) Genome instability: a mechanistic view of its causes and consequences. Nat Rev Genet 9: 204-217.
    • (2008) Nat Rev Genet , vol.9 , pp. 204-217
    • Aguilera, A.1    Gomez-Gonzalez, B.2
  • 2
    • 0000502113 scopus 로고    scopus 로고
    • DNA replication checkpoint
    • Boddy MN, Russell P (2001) DNA replication checkpoint. Curr Biol 11: R953-956.
    • (2001) Curr Biol , vol.11
    • Boddy, M.N.1    Russell, P.2
  • 3
    • 47749141560 scopus 로고    scopus 로고
    • ATR: An essential regulator of genome integrity
    • Cimprich KA, Cortez D (2008) ATR: an essential regulator of genome integrity. Nat Rev Mol Cell Biol 9: 616-627.
    • (2008) Nat Rev Mol Cell Biol , vol.9 , pp. 616-627
    • Cimprich, K.A.1    Cortez, D.2
  • 4
    • 33947432388 scopus 로고    scopus 로고
    • Replication fork stalling at natural impediments
    • Mirkin E, Mirkin S (2007) Replication fork stalling at natural impediments. Microbiol and Mol Biol Rev 71: 13-35.
    • (2007) Microbiol and Mol Biol Rev , vol.71 , pp. 13-35
    • Mirkin, E.1    Mirkin, S.2
  • 5
    • 25844438495 scopus 로고    scopus 로고
    • Repeat instability: Mechanisms of dynamic mutations
    • Pearson C, Nichol Edamura K, Cleary J (2005) Repeat instability: mechanisms of dynamic mutations. Nat Rev Genet 6: 729-742.
    • (2005) Nat Rev Genet , vol.6 , pp. 729-742
    • Pearson, C.1    Nichol Edamura, K.2    Cleary, J.3
  • 6
    • 0032489520 scopus 로고    scopus 로고
    • DNA doublestranded breaks induce histone H2AX phosphorylation on serine 139
    • Rogakou EP, Pilch DR, Orr A, Ivanova V, Bonner WM (1998) DNA doublestranded breaks induce histone H2AX phosphorylation on serine 139. J Biol Chem 273: 5858-5868.
    • (1998) J Biol Chem , vol.273 , pp. 5858-5868
    • Rogakou, E.P.1    Pilch, D.R.2    Orr, A.3    Ivanova, V.4    Bonner, W.M.5
  • 7
    • 0034700511 scopus 로고    scopus 로고
    • A role for Saccharomyces cerevisae histone H2A in DNA repair
    • Downs JA, Lowndes NF, Jackson SP (2000) A role for Saccharomyces cerevisae histone H2A in DNA repair. Nature 408: 1001-1004.
    • (2000) Nature , vol.408 , pp. 1001-1004
    • Downs, J.A.1    Lowndes, N.F.2    Jackson, S.P.3
  • 8
    • 3042793923 scopus 로고    scopus 로고
    • Histone H2A phosphorylation controls Crb2 recruitment at DNA breaks, maintains checkpoint arrest, and influences DNA repair in fission yeast
    • Nakamura TM, Du LL, Redon C, Russell P (2004) Histone H2A phosphorylation controls Crb2 recruitment at DNA breaks, maintains checkpoint arrest, and influences DNA repair in fission yeast. Mol Cell Biol 24: 6215-6230.
    • (2004) Mol Cell Biol , vol.24 , pp. 6215-6230
    • Nakamura, T.M.1    Du, L.L.2    Redon, C.3    Russell, P.4
  • 9
    • 0032861343 scopus 로고    scopus 로고
    • Megabase chromatin domains involved in DNA double-strand breaks in vivo
    • Rogakou EP, Boon C, Redon C, Bonner WM (1999) Megabase chromatin domains involved in DNA double-strand breaks in vivo. J Cell Biol 146: 905-916.
    • (1999) J Cell Biol , vol.146 , pp. 905-916
    • Rogakou, E.P.1    Boon, C.2    Redon, C.3    Bonner, W.M.4
  • 10
    • 34447532525 scopus 로고    scopus 로고
    • Heterochromatin in refractory to yH2AX modification in yeast and mammals
    • Kim J, Kruhlak M, Dotiwala F, Nussenzweig A, Haber JE (2007) Heterochromatin in refractory to yH2AX modification in yeast and mammals. J Cell Biol 178: 209-218.
    • (2007) J Cell Biol , vol.178 , pp. 209-218
    • Kim, J.1    Kruhlak, M.2    Dotiwala, F.3    Nussenzweig, A.4    Haber, J.E.5
  • 11
    • 0037062492 scopus 로고    scopus 로고
    • Increased ionizing radiation sensitivity and genomic instability in the absence of histone H2AX
    • Bassing CH, et al. (2002) Increased ionizing radiation sensitivity and genomic instability in the absence of histone H2AX. PNAS 99: 8173-8178.
    • (2002) PNAS , vol.99 , pp. 8173-8178
    • Bassing, C.H.1
  • 13
    • 33745607326 scopus 로고    scopus 로고
    • H2AX phosphorylation within the G1 phase after UV irradiation depends on nucleotide excision repair and not DNA double-strand breaks
    • Marti T, Hefner E, Feeney L, Natale V, Cleaver J (2006) H2AX phosphorylation within the G1 phase after UV irradiation depends on nucleotide excision repair and not DNA double-strand breaks. PNAS 103: 9891-9896.
    • (2006) PNAS , vol.103 , pp. 9891-9896
    • Marti, T.1    Hefner, E.2    Feeney, L.3    Natale, V.4    Cleaver, J.5
  • 14
    • 0035834693 scopus 로고    scopus 로고
    • Histone H2AX is phosphorylated in an ATR-dependent manner in response to replication stress
    • Ward I, Chen J (2001) Histone H2AX is phosphorylated in an ATR-dependent manner in response to replication stress. J Biol Chem 276: 42462-42467.
    • (2001) J Biol Chem , vol.276 , pp. 42462-42467
    • Ward, I.1    Chen, J.2
  • 15
    • 29144486147 scopus 로고    scopus 로고
    • Replisome instability, fork collapse, and gross chromosomal rearrangements arise synergistically from Mec1 kinase and RecQ helicase mutations
    • Cobb J, Schleker T, Rojas V, Bjergbaek L, Tercero J, et al. (2005) Replisome instability, fork collapse, and gross chromosomal rearrangements arise synergistically from Mec1 kinase and RecQ helicase mutations. Genes Dev 19: 3055-3069.
    • (2005) Genes Dev , vol.19 , pp. 3055-3069
    • Cobb, J.1    Schleker, T.2    Rojas, V.3    Bjergbaek, L.4    Tercero, J.5
  • 17
    • 33947167388 scopus 로고    scopus 로고
    • Histone H2AX and Fanconi anemia FANCD2 function in the same pathway to maintain chromosome stability
    • Bogliolo M, Lyakhovich A, Callen E, Castella M, Capelli E, et al. (2007) Histone H2AX and Fanconi anemia FANCD2 function in the same pathway to maintain chromosome stability. EMBO J 26: 1340-1351.
    • (2007) EMBO J , vol.26 , pp. 1340-1351
    • Bogliolo, M.1    Lyakhovich, A.2    Callen, E.3    Castella, M.4    Capelli, E.5
  • 18
    • 41649111513 scopus 로고    scopus 로고
    • The Ino80 chromatinremodeling enzyme regulates replisome function and stability
    • Papamichos-Chronakis M, Peterson CL (2008) The Ino80 chromatinremodeling enzyme regulates replisome function and stability. Nat Struct Mol Biol 15: 338-345.
    • (2008) Nat Struct Mol Biol , vol.15 , pp. 338-345
    • Papamichos-Chronakis, M.1    Peterson, C.L.2
  • 19
    • 29244434544 scopus 로고    scopus 로고
    • MDC1 directly binds phosphorylated histone H2AX to regulate cellular responses to DNA double-strand breaks
    • Stucki M, Clapperton JA, Mohammad D, Yaffe MB, Smerdon SJ, et al. (2005) MDC1 directly binds phosphorylated histone H2AX to regulate cellular responses to DNA double-strand breaks. Cell 123: 1213-1226.
    • (2005) Cell , vol.123 , pp. 1213-1226
    • Stucki, M.1    Clapperton, J.A.2    Mohammad, D.3    Yaffe, M.B.4    Smerdon, S.J.5
  • 20
    • 33745137149 scopus 로고    scopus 로고
    • Histone modification-dependent and -independent pathways for recruitment of checkpoint protein Crb2 to doublestrand breaks
    • Du L-L, Nakamura TM, Russell P (2006) Histone modification-dependent and -independent pathways for recruitment of checkpoint protein Crb2 to doublestrand breaks. Genes Dev 20: 1583-1596.
    • (2006) Genes Dev , vol.20 , pp. 1583-1596
    • Du, L.-L.1    Nakamura, T.M.2    Russell, P.3
  • 22
    • 0032844898 scopus 로고    scopus 로고
    • Rad18 is required for DNA repair and checkpoint responses in fission yeast
    • Verkade H, Bugg S, Lindsay H, Carr A, O'Connell MJ (1999) Rad18 is required for DNA repair and checkpoint responses in fission yeast. Mol Bio Cell 10: 2905-2918.
    • (1999) Mol Bio Cell , vol.10 , pp. 2905-2918
    • Verkade, H.1    Bugg, S.2    Lindsay, H.3    Carr, A.4    O'Connell, M.J.5
  • 24
    • 1842472073 scopus 로고    scopus 로고
    • Esc4p, a new target of Mec1p (ATR), promotes resumption of DNA synthesis after DNA damage
    • Rouse J (2004) Esc4p, a new target of Mec1p (ATR), promotes resumption of DNA synthesis after DNA damage. EMBO J 23: 1188-1197.
    • (2004) EMBO J , vol.23 , pp. 1188-1197
    • Rouse, J.1
  • 25
    • 0037372881 scopus 로고    scopus 로고
    • BRCT domain-containing protein PTIP is essential for progression through mitosis
    • Cho EA, Prindle MJ, Dressler GR (2003) BRCT domain-containing protein PTIP is essential for progression through mitosis. Mol Cell Biol 23: 1666-1673.
    • (2003) Mol Cell Biol , vol.23 , pp. 1666-1673
    • Cho, E.A.1    Prindle, M.J.2    Dressler, G.R.3
  • 26
    • 13944261496 scopus 로고    scopus 로고
    • Temporal separation of replication and recombination requires the intra-S checkpoint
    • Meister P, Taddei A, Vernis L, Poidevin M, Gasser SM, et al. (2005) Temporal separation of replication and recombination requires the intra-S checkpoint. J Cell Biol 168: 537-544.
    • (2005) J Cell Biol , vol.168 , pp. 537-544
    • Meister, P.1    Taddei, A.2    Vernis, L.3    Poidevin, M.4    Gasser, S.M.5
  • 27
    • 0347990576 scopus 로고    scopus 로고
    • Slx1-Slx4 are subunits of a structure-specific endonuclease that maintains ribosomal DNA in fission yeast
    • Coulon S, Gaillard PH, Chahwan C, McDonald WH, Yates JR, 3rd, et al. (2004) Slx1-Slx4 are subunits of a structure-specific endonuclease that maintains ribosomal DNA in fission yeast. Mol Biol Cell 15: 71-80.
    • (2004) Mol Biol Cell , vol.15 , pp. 71-80
    • Coulon, S.1    Gaillard, P.H.2    Chahwan, C.3    McDonald, W.H.4    Yates III, J.R.5
  • 28
    • 0030994386 scopus 로고    scopus 로고
    • rqh1+, a fission yeast gene related to the Bloom's and Werner's syndrome genes, is required for reversible S phase arrest
    • Stewart E, Chapman C, Al-Khodairy F, Carr AM, Enoch T (1997) rqh1+, a fission yeast gene related to the Bloom's and Werner's syndrome genes, is required for reversible S phase arrest. EMBO J 16: 2682-2692.
    • (1997) EMBO J , vol.16 , pp. 2682-2692
    • Stewart, E.1    Chapman, C.2    Al-Khodairy, F.3    Carr, A.M.4    Enoch, T.5
  • 29
    • 0030699088 scopus 로고    scopus 로고
    • Role of Schizosaccharomyces pombe RecQ homolog, recombination, and checkpoint genes in UV damage tolerance
    • Murray JM, Lindsay HD, Munday CA, Carr AM (1997) Role of Schizosaccharomyces pombe RecQ homolog, recombination, and checkpoint genes in UV damage tolerance. Mol Cell Biol 17: 6868-6875.
    • (1997) Mol Cell Biol , vol.17 , pp. 6868-6875
    • Murray, J.M.1    Lindsay, H.D.2    Munday, C.A.3    Carr, A.M.4
  • 30
    • 30544442398 scopus 로고    scopus 로고
    • A role for the fission yeast Rqh1 helicase in chromosome segregation
    • Win T, Mankouri H, Hickson ID, Wang S-W (2005) A role for the fission yeast Rqh1 helicase in chromosome segregation. J Cell Sci 118: 5777-5784.
    • (2005) J Cell Sci , vol.118 , pp. 5777-5784
    • Win, T.1    Mankouri, H.2    Hickson, I.D.3    Wang, S-W.4
  • 32
    • 0042470609 scopus 로고    scopus 로고
    • Retention but not recruitment of Crb2 at double-strand breaks requires Rad1 and Rad3 complexes
    • Du LL, Nakamura TM, Moser BA, Russell P (2003) Retention but not recruitment of Crb2 at double-strand breaks requires Rad1 and Rad3 complexes. Mol Cell Biol 23: 6150-6158.
    • (2003) Mol Cell Biol , vol.23 , pp. 6150-6158
    • Du, L.L.1    Nakamura, T.M.2    Moser, B.A.3    Russell, P.4
  • 33
    • 0043066728 scopus 로고    scopus 로고
    • Yeast histone 2A serine 129 is essential for the efficient repair of checkpoint-blind DNA damage
    • Redon C, Pilch DR, Rogakou EP, Orr AH, Lowndes NF, et al. (2003) Yeast histone 2A serine 129 is essential for the efficient repair of checkpoint-blind DNA damage. EMBO Rep 4: 678-684.
    • (2003) EMBO Rep , vol.4 , pp. 678-684
    • Redon, C.1    Pilch, D.R.2    Rogakou, E.P.3    Orr, A.H.4    Lowndes, N.F.5
  • 34
    • 4644257681 scopus 로고    scopus 로고
    • Distribution and dynamics of chromatin modification at a defined DNA double strand break
    • Shroff R, Arbel-Eden A, Pilch DR, Ira G, Bonner WM, et al. (2004) Distribution and dynamics of chromatin modification at a defined DNA double strand break. Curr Biol 14: 1703-1711.
    • (2004) Curr Biol , vol.14 , pp. 1703-1711
    • Shroff, R.1    Arbel-Eden, A.2    Pilch, D.R.3    Ira, G.4    Bonner, W.M.5
  • 35
    • 0035882059 scopus 로고    scopus 로고
    • A DNA replication-arrest site RTS1 regulates imprinting by determining the direction of replication at mat1 in S.pombe
    • Dalgaard JZ, Klar AJ (2001) A DNA replication-arrest site RTS1 regulates imprinting by determining the direction of replication at mat1 in S.pombe. Genes Dev 15: 2060-2068.
    • (2001) Genes Dev , vol.15 , pp. 2060-2068
    • Dalgaard, J.Z.1    Klar, A.J.2
  • 36
    • 43249128930 scopus 로고    scopus 로고
    • Mus81 is essential for sister chromatid recombination at broken replication forks
    • Roseaulin L, Yamada Y, Tsutsui Y, Russell P, Iwasaki H, et al. (2008) Mus81 is essential for sister chromatid recombination at broken replication forks. EMBO J 27: 1378-1387.
    • (2008) EMBO J , vol.27 , pp. 1378-1387
    • Roseaulin, L.1    Yamada, Y.2    Tsutsui, Y.3    Russell, P.4    Iwasaki, H.5
  • 37
    • 77957369806 scopus 로고    scopus 로고
    • A site- and strand-specific DNA break confers asymmetric switching potential in fission yeast
    • Arcangioli B (1998) A site- and strand-specific DNA break confers asymmetric switching potential in fission yeast. EMBO J 10: 3025-3032.
    • (1998) EMBO J , vol.10 , pp. 3025-3032
    • Arcangioli, B.1
  • 38
    • 0023058957 scopus 로고
    • Initiation of meiotic recombination by double-strand breaks in S.pombe
    • Klar A, Miglio L (1986) Initiation of meiotic recombination by double-strand breaks in S.pombe. Cell 46: 725-731.
    • (1986) Cell , vol.46 , pp. 725-731
    • Klar, A.1    Miglio, L.2
  • 39
    • 40749143615 scopus 로고    scopus 로고
    • Growth and manipulation of S. pombe
    • Unit 13
    • Forsburg SL (2003) Growth and manipulation of S. pombe. Curr Protoc Mol Biol Chapter 13: Unit 13 16.
    • (2003) Curr Protoc Mol Biol Chapter , vol.13 , pp. 16
    • Forsburg, S.L.1
  • 40
    • 0022462146 scopus 로고
    • Cdc25+ functions as an inducer in the mitotic control of fission yeast
    • Russell P, Nurse P (1986) cdc25+ functions as an inducer in the mitotic control of fission yeast. Cell 45: 145-153.
    • (1986) Cell , vol.45 , pp. 145-153
    • Russell, P.1    Nurse, P.2
  • 41
    • 33747587864 scopus 로고    scopus 로고
    • Modelbased analysis of tiling-arrays for ChIP-chip
    • Johnson WE, Li W, Meyer CA, Gottardo R, Carroll JS, et al. (2006) Modelbased analysis of tiling-arrays for ChIP-chip. PNAS 103: 12457-12462.
    • (2006) PNAS , vol.103 , pp. 12457-12462
    • Johnson, W.E.1    Li, W.2    Meyer, C.A.3    Gottardo, R.4    Carroll, J.S.5
  • 42
    • 0036670615 scopus 로고    scopus 로고
    • Telomere binding of checkpoint sensor and DNA repair proteins contributes to maintenance of functional fission yeast telomeres
    • Nakamura TM, Moser BA, Russell P (2002) Telomere binding of checkpoint sensor and DNA repair proteins contributes to maintenance of functional fission yeast telomeres. Genetics 161: 1437-1452.
    • (2002) Genetics , vol.161 , pp. 1437-1452
    • Nakamura, T.M.1    Moser, B.A.2    Russell, P.3
  • 44
    • 0037148758 scopus 로고    scopus 로고
    • The genome sequence of Schizosaccharomyces pombe
    • Wood V, et al. (2002) The genome sequence of Schizosaccharomyces pombe. Nature 415: 871-880.
    • (2002) Nature , vol.415 , pp. 871-880
    • Wood, V.1
  • 45
    • 33646912186 scopus 로고    scopus 로고
    • A role for TFIIIC transcription factor complex in genome organization
    • Noma K, Cam HP, Maraia RJ, Grewal SI (2006) A role for TFIIIC transcription factor complex in genome organization. Cell 125: 859-872.
    • (2006) Cell , vol.125 , pp. 859-872
    • Noma, K.1    Cam, H.P.2    Maraia, R.J.3    Grewal, S.I.4
  • 46
    • 0027478874 scopus 로고
    • The smt-0 mutation which abolishes mating-type switching in fission yeast is a deletion
    • Styrkársdóttir U, Egel R, Nielsen O (1993) The smt-0 mutation which abolishes mating-type switching in fission yeast is a deletion. Curr Genet 23: 184-186.
    • (1993) Curr Genet , vol.23 , pp. 184-186
    • Styrkársdóttir, U.1    Egel, R.2    Nielsen, O.3
  • 47
    • 7944236527 scopus 로고    scopus 로고
    • DNA replication: Stalling a fork for imprinting and switching
    • Egel R (2004) DNA replication: stalling a fork for imprinting and switching. Curr Biol 14: R915-917.
    • (2004) Curr Biol , vol.14
    • Egel, R.1
  • 48
    • 4544250127 scopus 로고    scopus 로고
    • Swi1 and Swi3 are components of a replication fork protection complex in fission yeast
    • Noguchi E, Noguchi C, McDonald W, Yates III J, Russell P (2004) Swi1 and Swi3 are components of a replication fork protection complex in fission yeast. Mol Cell Biol 24: 8342-8355.
    • (2004) Mol Cell Biol , vol.24 , pp. 8342-8355
    • Noguchi, E.1    Noguchi, C.2    McDonald, W.3    Yates I.I.I, J.4    Russell, P.5
  • 49
    • 21244440716 scopus 로고    scopus 로고
    • Replication fork blockage by RTS1 at an ectopic site promotes recombination in fission yeast
    • Ahn J, Osman F, Whitby M (2005) Replication fork blockage by RTS1 at an ectopic site promotes recombination in fission yeast. EMBO J 24: 2011-2023.
    • (2005) EMBO J , vol.24 , pp. 2011-2023
    • Ahn, J.1    Osman, F.2    Whitby, M.3
  • 50
    • 17944401516 scopus 로고    scopus 로고
    • Transcription termination factor reb1p causes two replication fork barriers at its cognate sites in fission yeast ribosomal DNA in vivo
    • Sánchez-Gorostiaga A, Lopez-Estrano C, Krimer D, Schvartzman J, Hernández P (2004) Transcription termination factor reb1p causes two replication fork barriers at its cognate sites in fission yeast ribosomal DNA in vivo. Mol Cell Biol 24: 398-406.
    • (2004) Mol Cell Biol , vol.24 , pp. 398-406
    • Sánchez-Gorostiaga, A.1    Lopez-Estrano, C.2    Krimer, D.3    Schvartzman, J.4    Hernández, P.5
  • 51
    • 4644291834 scopus 로고    scopus 로고
    • Swi1- and swi3-dependent and independent replication fork arrest at the ribosomal DNA of Schizosaccharomyces pombe
    • Krings G, Bastia D (2004) Swi1- and swi3-dependent and independent replication fork arrest at the ribosomal DNA of Schizosaccharomyces pombe. Proc Natl Acad Sci U S A 101: 14085-14090.
    • (2004) Proc Natl Acad Sci U S A , vol.101 , pp. 14085-14090
    • Krings, G.1    Bastia, D.2
  • 52
    • 52049125947 scopus 로고    scopus 로고
    • Replication fork arrest, recombination and the maintenance of ribosomal DNA stability
    • Tsang E, Carr AM (2008) Replication fork arrest, recombination and the maintenance of ribosomal DNA stability. DNA Repair (Amst).
    • (2008) DNA Repair (Amst)
    • Tsang, E.1    Carr, A.M.2
  • 53
    • 0032535478 scopus 로고    scopus 로고
    • Expansion and contraction of ribosomal DNA repeats in Saccharomyces cerevisiae: Requirement of replication fork blocking (Fob1) protein and the role of RNA polymerase I
    • Kobayashi T, Heck D, Nomura M, Horiuchi T (1998) Expansion and contraction of ribosomal DNA repeats in Saccharomyces cerevisiae: requirement of replication fork blocking (Fob1) protein and the role of RNA polymerase I. Genes Dev 12: 3821-3830.
    • (1998) Genes Dev , vol.12 , pp. 3821-3830
    • Kobayashi, T.1    Heck, D.2    Nomura, M.3    Horiuchi, T.4
  • 54
    • 25444495864 scopus 로고    scopus 로고
    • The mating type switch-activating protein Sap1 is required for replication fork arrest at the rRNA genes of fission yeast
    • Mejía-Ramírez E, Sánchez-Gorostiaga A, Krimer D, Schvartzman J, Hernández P (2005) The mating type switch-activating protein Sap1 is required for replication fork arrest at the rRNA genes of fission yeast. Mol Cell Biol 25: 8755-8761.
    • (2005) Mol Cell Biol , vol.25 , pp. 8755-8761
    • Mejía-Ramírez, E.1    Sánchez-Gorostiaga, A.2    Krimer, D.3    Schvartzman, J.4    Hernández, P.5
  • 55
    • 0142027841 scopus 로고    scopus 로고
    • Swi1 prevents replication fork collapse and controls checkpoint kinase Cds1
    • Noguchi E, Noguchi C, Du LL, Russell P (2003) Swi1 prevents replication fork collapse and controls checkpoint kinase Cds1. Mol Cell Biol 23: 7861-7874.
    • (2003) Mol Cell Biol , vol.23 , pp. 7861-7874
    • Noguchi, E.1    Noguchi, C.2    Du, L.L.3    Russell, P.4
  • 56
    • 63849101707 scopus 로고    scopus 로고
    • Recombination at DNA replication fork barriers is not universal and is differentially regulated by Swi1
    • Pryce DW, Ramayah S, Jaendling A, McFarlane RJ (2009) Recombination at DNA replication fork barriers is not universal and is differentially regulated by Swi1. Proc Natl Acad Sci U S A 106: 4770-4775.
    • (2009) Proc Natl Acad Sci U S A , vol.106 , pp. 4770-4775
    • Pryce, D.W.1    Ramayah, S.2    Jaendling, A.3    McFarlane, R.J.4
  • 57
    • 0029740114 scopus 로고    scopus 로고
    • DNA replication forks pause sites dependent on transcription
    • Deshpande AM, Newlon CS (1996) DNA replication forks pause sites dependent on transcription. Science 272: 1030-1033.
    • (1996) Science , vol.272 , pp. 1030-1033
    • Deshpande, A.M.1    Newlon, C.S.2
  • 58
    • 42549095557 scopus 로고    scopus 로고
    • An RNA Polymerase III-dependent heterochromatin barrier at fission yeast centromeres
    • doi:10.1371/journal.pone.0001099
    • Scott K, White C, Willard H (2007) An RNA Polymerase III-dependent heterochromatin barrier at fission yeast centromeres. PLoS ONE 2: e1099. doi:10.1371/journal.pone.0001099.
    • (2007) PLoS ONE , vol.2
    • Scott, K.1    White, C.2    Willard, H.3
  • 59
    • 34249304470 scopus 로고    scopus 로고
    • Transcription and RNA interference in the formation of heterochromatin
    • Grewal SI, Elgin SC (2007) Transcription and RNA interference in the formation of heterochromatin. Nature 447: 399-406.
    • (2007) Nature , vol.447 , pp. 399-406
    • Grewal, S.I.1    Elgin, S.C.2
  • 60
    • 0037072661 scopus 로고    scopus 로고
    • Regulation of heterochromatic silencing and histone H3 lysine-9 methylation by RNAi
    • Volpe T, Kidner C, Hall I, Teng G, Grewal S, et al. (2002) Regulation of heterochromatic silencing and histone H3 lysine-9 methylation by RNAi. Science 297: 1833-1837.
    • (2002) Science , vol.297 , pp. 1833-1837
    • Volpe, T.1    Kidner, C.2    Hall, I.3    Teng, G.4    Grewal, S.5
  • 61
    • 23044498502 scopus 로고    scopus 로고
    • Comprehensive analysis of heterochromatin- and RNAi-mediated epigenetic control of the fission yeast genome
    • Cam HP, Sugiyama T, Chen ES, Chen X, FitzGerald PC, et al. (2005) Comprehensive analysis of heterochromatin- and RNAi-mediated epigenetic control of the fission yeast genome. Nat Genet 37: 809-819.
    • (2005) Nat Genet , vol.37 , pp. 809-819
    • Cam, H.P.1    Sugiyama, T.2    Chen, E.S.3    Chen, X.4    FitzGerald, P.C.5
  • 62
    • 59649099984 scopus 로고    scopus 로고
    • Fission yeast Scm3: A CENP-A receptor required for integrity of subkinetochore chromatin
    • Pidoux A, Choi E, Abbott J, Liu X, Kagansky A, et al. (2009) Fission yeast Scm3: a CENP-A receptor required for integrity of subkinetochore chromatin. Mol Cell 33: 299-311.
    • (2009) Mol Cell , vol.33 , pp. 299-311
    • Pidoux, A.1    Choi, E.2    Abbott, J.3    Liu, X.4    Kagansky, A.5
  • 63
    • 59649107021 scopus 로고    scopus 로고
    • Fission yeast Scm3 mediates stable assembly of Cnp1/CENP-A into centromeric chromatin
    • Williams J, Hayashi T, Yanagida M, Russell P (2009) Fission yeast Scm3 mediates stable assembly of Cnp1/CENP-A into centromeric chromatin. Mol Cell 33: 287-298.
    • (2009) Mol Cell , vol.33 , pp. 287-298
    • Williams, J.1    Hayashi, T.2    Yanagida, M.3    Russell, P.4
  • 64
    • 11844277040 scopus 로고    scopus 로고
    • Global effects on gene expression in fission yeast by silencing and RNA interference machineries
    • Hansen KR, Burns G, Mata J, Volpe TA, Martienssen RA, et al. (2005) Global effects on gene expression in fission yeast by silencing and RNA interference machineries. Mol Cell Biol 25: 590-601.
    • (2005) Mol Cell Biol , vol.25 , pp. 590-601
    • Hansen, K.R.1    Burns, G.2    Mata, J.3    Volpe, T.A.4    Martienssen, R.A.5
  • 65
    • 26444575698 scopus 로고    scopus 로고
    • Genomewide analysis of nucleosome density histone acetylation and HDAC function in fission yeast
    • Wiren M, Silverstein RA, Sinha I, Walfridsson J, Lee A, et al. (2005) Genomewide analysis of nucleosome density histone acetylation and HDAC function in fission yeast. EMBO J 24: 2906-2918.
    • (2005) EMBO J , vol.24 , pp. 2906-2918
    • Wiren, M.1    Silverstein, R.A.2    Sinha, I.3    Walfridsson, J.4    Lee, A.5
  • 66
    • 0036729529 scopus 로고    scopus 로고
    • The transcriptional program of meiosis and sporulation in fission yeast
    • Mata J, Lyne R, Burns G, Bahler J (2002) The transcriptional program of meiosis and sporulation in fission yeast. Nat Genet 32: 143-147.
    • (2002) Nat Genet , vol.32 , pp. 143-147
    • Mata, J.1    Lyne, R.2    Burns, G.3    Bahler, J.4
  • 67
    • 0141630486 scopus 로고    scopus 로고
    • Retrotransposons and their recognition of pol II promoters: A comprehensive survey of the transposable elements from the complete genome sequence of Schizosaccharomyces pombe
    • Bowen N, Jorda I, Epstein J, Wood V, Levin H (2003) Retrotransposons and their recognition of pol II promoters: a comprehensive survey of the transposable elements from the complete genome sequence of Schizosaccharomyces pombe. Genome Res 13: 1984-1997.
    • (2003) Genome Res , vol.13 , pp. 1984-1997
    • Bowen, N.1    Jorda, I.2    Epstein, J.3    Wood, V.4    Levin, H.5
  • 68
    • 39749203698 scopus 로고    scopus 로고
    • Molecular phylogenetics of ascomycotal adhesins - a novel family of putative cell-surface adhesive proteins in fission yeasts
    • Linder T, Gustafsson CM (2008) Molecular phylogenetics of ascomycotal adhesins - a novel family of putative cell-surface adhesive proteins in fission yeasts. Fugal Genet Biol 45: 485-497.
    • (2008) Fugal Genet Biol , vol.45 , pp. 485-497
    • Linder, T.1    Gustafsson, C.M.2
  • 69
  • 70
    • 26444516001 scopus 로고    scopus 로고
    • Schizosaccharomyces pombe mst2+ encodes a MYST family histone acetyltransferase that negatively regulates telomere silencing
    • Gomez E, Espinosa J, Forsburg S (2005) Schizosaccharomyces pombe mst2+ encodes a MYST family histone acetyltransferase that negatively regulates telomere silencing. Mol Cell Biol 25: 8887-8903.
    • (2005) Mol Cell Biol , vol.25 , pp. 8887-8903
    • Gomez, E.1    Espinosa, J.2    Forsburg, S.3
  • 71
    • 0035930750 scopus 로고    scopus 로고
    • Requirement of heterochromatin for cohesion at centromeres
    • Bernard P, Maure J, Partridge J, Genier S, Javerzat J, et al. (2001) Requirement of heterochromatin for cohesion at centromeres. Science 294: 2539-2542.
    • (2001) Science , vol.294 , pp. 2539-2542
    • Bernard, P.1    Maure, J.2    Partridge, J.3    Genier, S.4    Javerzat, J.5
  • 72
    • 10944232673 scopus 로고    scopus 로고
    • Postreplicative recruitment of cohesin to double-strand breaks is required for DNA repair
    • Strom L, Lindroos H, Shirahige K, Sjogren C (2004) Postreplicative recruitment of cohesin to double-strand breaks is required for DNA repair. Mol Cell 16: 1003-1015.
    • (2004) Mol Cell , vol.16 , pp. 1003-1015
    • Strom, L.1    Lindroos, H.2    Shirahige, K.3    Sjogren, C.4
  • 73
    • 10944262393 scopus 로고    scopus 로고
    • DNA damage response pathway uses histone modification to assemble a doublestrand break-specific cohesin domain
    • Unal E, Arbel-Eden A, Sattler U, Shroff R, Lichten M, et al. (2004) DNA damage response pathway uses histone modification to assemble a doublestrand break-specific cohesin domain. Mol Cell 16: 991-1002.
    • (2004) Mol Cell , vol.16 , pp. 991-1002
    • Unal, E.1    Arbel-Eden, A.2    Sattler, U.3    Shroff, R.4    Lichten, M.5
  • 74
    • 61849184077 scopus 로고    scopus 로고
    • The heterochromatin protein Swi6/HP1 activates replication origins at the pericentromeric region and silent mating-type locus
    • Hayashi MT, Takahashi TS, Nakagawa T, Nakayama J, Masukata H (2009) The heterochromatin protein Swi6/HP1 activates replication origins at the pericentromeric region and silent mating-type locus. Nat Cell Biol 11: 357-362.
    • (2009) Nat Cell Biol , vol.11 , pp. 357-362
    • Hayashi, M.T.1    Takahashi, T.S.2    Nakagawa, T.3    Nakayama, J.4    Masukata, H.5
  • 75
    • 0031038170 scopus 로고    scopus 로고
    • Regulation of telomere length and function by a Myb-domain protein in fission yeast
    • Cooper JP, Nimmo ER, Allshire RC, Cech TR (1997) Regulation of telomere length and function by a Myb-domain protein in fission yeast. Nature 385: 744-747.
    • (1997) Nature , vol.385 , pp. 744-747
    • Cooper, J.P.1    Nimmo, E.R.2    Allshire, R.C.3    Cech, T.R.4
  • 76
    • 33645747064 scopus 로고    scopus 로고
    • Semi-conservative DNA replication through telomeres requires Taz1
    • Miller K, Rog O, Cooper JP (2006) Semi-conservative DNA replication through telomeres requires Taz1. Nature 440: 824-828.
    • (2006) Nature , vol.440 , pp. 824-828
    • Miller, K.1    Rog, O.2    Cooper, J.P.3
  • 77
    • 27144554038 scopus 로고    scopus 로고
    • Telomere binding protein Taz1 establishes Swi6 heterochromatin independently of RNAi at telomeres
    • Kanoh J, Sadaie M, Urano T, Ishikawa F (2005) Telomere binding protein Taz1 establishes Swi6 heterochromatin independently of RNAi at telomeres. Curr Biol 15: 1808-1819.
    • (2005) Curr Biol , vol.15 , pp. 1808-1819
    • Kanoh, J.1    Sadaie, M.2    Urano, T.3    Ishikawa, F.4
  • 78
    • 0037178723 scopus 로고    scopus 로고
    • ATR homolog Mec1 promotes fork progression, thus averting breaks in replication slow zones
    • Cha RS, Kleckner N (2002) ATR homolog Mec1 promotes fork progression, thus averting breaks in replication slow zones. Science 297: 602-606.
    • (2002) Science , vol.297 , pp. 602-606
    • Cha, R.S.1    Kleckner, N.2
  • 79
    • 0037074013 scopus 로고    scopus 로고
    • ATR regulates fragile site stability
    • Casper A, Nghiem P, Arlt M, Glover T (2002) ATR regulates fragile site stability. Cell 111: 779-789.
    • (2002) Cell , vol.111 , pp. 779-789
    • Casper, A.1    Nghiem, P.2    Arlt, M.3    Glover, T.4
  • 80
    • 33845755946 scopus 로고    scopus 로고
    • Heterochromatin revisited
    • Grewal SI, Jia S (2007) Heterochromatin revisited. Nat Rev Genet 8: 35-46.
    • (2007) Nat Rev Genet , vol.8 , pp. 35-46
    • Grewal, S.I.1    Jia, S.2
  • 81
    • 38949208022 scopus 로고    scopus 로고
    • Cell cycle control of centromeric repeat transcription and heterochromatin assembly
    • Chen E, Zhang K, Nicolas E, Cam H, Zofall M, et al. (2008) Cell cycle control of centromeric repeat transcription and heterochromatin assembly. Nature 451: 734-737.
    • (2008) Nature , vol.451 , pp. 734-737
    • Chen, E.1    Zhang, K.2    Nicolas, E.3    Cam, H.4    Zofall, M.5
  • 82
    • 41449089409 scopus 로고    scopus 로고
    • RNA interference guides histone modification during the S phase of chromosomal replication
    • Kloc A, Zarategui M, Nora E, Martienssen R (2008) RNA interference guides histone modification during the S phase of chromosomal replication. Curr Biol 18: 490-495.
    • (2008) Curr Biol , vol.18 , pp. 490-495
    • Kloc, A.1    Zarategui, M.2    Nora, E.3    Martienssen, R.4
  • 83
    • 0036469913 scopus 로고    scopus 로고
    • The connection between transcription and genomic instability
    • Aguilera A (2002) The connection between transcription and genomic instability. EMBO J 21: 195-201.
    • (2002) EMBO J , vol.21 , pp. 195-201
    • Aguilera, A.1
  • 84
    • 0026761603 scopus 로고
    • Replication forks pause at yeast centromeres
    • Greenfeder SA, Newlon CS (1992) Replication forks pause at yeast centromeres. Mol Cell Biol 12: 4056-4066.
    • (1992) Mol Cell Biol , vol.12 , pp. 4056-4066
    • Greenfeder, S.A.1    Newlon, C.S.2
  • 86
    • 56549121015 scopus 로고    scopus 로고
    • Rad51 suppresses gross chromosomal rearrangement at centromere in Schizosaccharomyces pombe
    • Nakamura K, Okamoto A, Katou Y, Yadani C, Shitanda T, et al. (2008) Rad51 suppresses gross chromosomal rearrangement at centromere in Schizosaccharomyces pombe. EMBO J 27: 3036-3046.
    • (2008) EMBO J , vol.27 , pp. 3036-3046
    • Nakamura, K.1    Okamoto, A.2    Katou, Y.3    Yadani, C.4    Shitanda, T.5
  • 87
    • 56549108671 scopus 로고    scopus 로고
    • Localization of Smc5/6 to centromeres and telomeres requires heterochromatin and SUMO, respectively
    • Pebernard S, Schaffer L, Campbell D, Head S, Boddy M (2008) Localization of Smc5/6 to centromeres and telomeres requires heterochromatin and SUMO, respectively. EMBO J 27: 3011-3023.
    • (2008) EMBO J , vol.27 , pp. 3011-3023
    • Pebernard, S.1    Schaffer, L.2    Campbell, D.3    Head, S.4    Boddy, M.5
  • 88
    • 27944496485 scopus 로고    scopus 로고
    • BRCA1 associates with the inactive X chromosome in late S-phase, coupled with transient H2AX phosphorylation
    • Chadwick BP, Lane TF (2005) BRCA1 associates with the inactive X chromosome in late S-phase, coupled with transient H2AX phosphorylation. Chromosoma 114: 432-439.
    • (2005) Chromosoma , vol.114 , pp. 432-439
    • Chadwick, B.P.1    Lane, T.F.2
  • 89
    • 25444445593 scopus 로고    scopus 로고
    • Smc5-Smc6 complex preserves nucleolar integrity in S. cerevisiae
    • Torres-Rosell J, Machin F, Aragon L (2005) Smc5-Smc6 complex preserves nucleolar integrity in S. cerevisiae. Cell Cycle 4: 868-872.
    • (2005) Cell Cycle , vol.4 , pp. 868-872
    • Torres-Rosell, J.1    Machin, F.2    Aragon, L.3
  • 90
    • 6344268940 scopus 로고    scopus 로고
    • Nse1, Nse2, and a novel subunit of the Smc5-Smc6 complex, Nse3, play a crucial role in meiosis
    • Pebernard S, McDonald WH, Pavlova Y, Yates JR, 3rd, Boddy MN (2004) Nse1, Nse2, and a novel subunit of the Smc5-Smc6 complex, Nse3, play a crucial role in meiosis. Mol Biol Cell 15: 4866-4876.
    • (2004) Mol Biol Cell , vol.15 , pp. 4866-4876
    • Pebernard, S.1    McDonald, W.H.2    Pavlova, Y.3    Yates III, J.R.4    Boddy, M.N.5
  • 91
    • 16344379951 scopus 로고    scopus 로고
    • SMC5 and SMC6 genes are required for the segregation of repetitive chromosome regions
    • Torres-Rosell J, Machin F, Farmer S, Jarmuz A, Eydmann T, et al. (2005) SMC5 and SMC6 genes are required for the segregation of repetitive chromosome regions. Nat Cell Biol 7: 412-419.
    • (2005) Nat Cell Biol , vol.7 , pp. 412-419
    • Torres-Rosell, J.1    Machin, F.2    Farmer, S.3    Jarmuz, A.4    Eydmann, T.5
  • 93
    • 30044442659 scopus 로고    scopus 로고
    • Slx4 regulates DNA damage checkpoint-dependent phosphorylation of the BRCT domain protein Rtt107/Esc4
    • Roberts TM, Kobor MS, Bastin-Shanower SA, Ii M, Horte SA, et al. (2006) Slx4 regulates DNA damage checkpoint-dependent phosphorylation of the BRCT domain protein Rtt107/Esc4. Mol Biol Cell 17: 539-548.
    • (2006) Mol Biol Cell , vol.17 , pp. 539-548
    • Roberts, T.M.1    Kobor, M.S.2    Bastin-Shanower, S.A.3    Ii, M.4    Horte, S.A.5
  • 94
    • 38749104624 scopus 로고    scopus 로고
    • Regulation of rtt107 recruitment to stalled DNA replication forks by the cullin rtt101 and the rtt109 acetyltransferase
    • Roberts TM, Zaidi IW, Vaisica JA, Peter M, Brown GW (2008) Regulation of rtt107 recruitment to stalled DNA replication forks by the cullin rtt101 and the rtt109 acetyltransferase. Mol Biol Cell 19: 171-180.
    • (2008) Mol Biol Cell , vol.19 , pp. 171-180
    • Roberts, T.M.1    Zaidi, I.W.2    Vaisica, J.A.3    Peter, M.4    Brown, G.W.5
  • 96
    • 0035692614 scopus 로고    scopus 로고
    • Multiple regulators of Ty1 transposition in Saccharomyces cerevisiae have conserved roles in genome maintenance
    • Scholes DT, Banerjee M, Bowen B, Curcio MJ (2001) Multiple regulators of Ty1 transposition in Saccharomyces cerevisiae have conserved roles in genome maintenance. Genetics 159: 1449-1465.
    • (2001) Genetics , vol.159 , pp. 1449-1465
    • Scholes, D.T.1    Banerjee, M.2    Bowen, B.3    Curcio, M.J.4
  • 97
    • 61849141219 scopus 로고    scopus 로고
    • Control of histone methylation and genome stability by PTIP
    • Munoz IM, Rouse J (2009) Control of histone methylation and genome stability by PTIP. EMBO Rep 10: 239-245.
    • (2009) EMBO Rep , vol.10 , pp. 239-245
    • Munoz, I.M.1    Rouse, J.2
  • 98
    • 77951176381 scopus 로고    scopus 로고
    • PTIP promotes DNA double-strand break repair through homologous recombination
    • Wang X, Takenaka K, Takeda S (2010) PTIP promotes DNA double-strand break repair through homologous recombination. Genes Cells.
    • (2010) Genes Cells
    • Wang, X.1    Takenaka, K.2    Takeda, S.3
  • 99
    • 38549152196 scopus 로고    scopus 로고
    • Host genome surveillance for retrotransposons by transposon-derived proteins
    • Cam HP, Noma K, Ebina H, Levin HL, Grewal SI (2008) Host genome surveillance for retrotransposons by transposon-derived proteins. Nature 451: 431-436.
    • (2008) Nature , vol.451 , pp. 431-436
    • Cam, H.P.1    Noma, K.2    Ebina, H.3    Levin, H.L.4    Grewal, S.I.5
  • 100
    • 33750438774 scopus 로고    scopus 로고
    • Genome-wide characterization of fission yeast DNA replication origins
    • Heichinger C, Penkett CJ, Bahler J, Nurse P (2006) Genome-wide characterization of fission yeast DNA replication origins. EMBO J 25: 5171-5179.
    • (2006) EMBO J , vol.25 , pp. 5171-5179
    • Heichinger, C.1    Penkett, C.J.2    Bahler, J.3    Nurse, P.4
  • 101
    • 68249153738 scopus 로고    scopus 로고
    • Silent chromatin at the middle and ends: Lessons from yeasts
    • Buhler M, Gasser SM (2009) Silent chromatin at the middle and ends: lessons from yeasts. EMBO J 28: 2149-2161.
    • (2009) EMBO J , vol.28 , pp. 2149-2161
    • Buhler, M.1    Gasser, S.M.2
  • 102
    • 0036529517 scopus 로고    scopus 로고
    • Transcriptional silencing in Saccharomyces cerevisae and Schizosaccharomyces pombe
    • Huang Y (2002) Transcriptional silencing in Saccharomyces cerevisae and Schizosaccharomyces pombe. Nucleic Acids Res 30: 1465-1482.
    • (2002) Nucleic Acids Res , vol.30 , pp. 1465-1482
    • Huang, Y.1
  • 104
    • 34247109128 scopus 로고    scopus 로고
    • Histone H2AX phosphorylation is associated with most meiotic events in grasshopper
    • Cabrero J, Teruel M, Carmona FD, Camacho JP (2007) Histone H2AX phosphorylation is associated with most meiotic events in grasshopper. Cytogenet Genome Res 116: 311-315.
    • (2007) Cytogenet Genome Res , vol.116 , pp. 311-315
    • Cabrero, J.1    Teruel, M.2    Carmona, F.D.3    Camacho, J.P.4
  • 105
    • 0031818471 scopus 로고    scopus 로고
    • Heterologous modules for efficient and versatile PCR-based gene targeting in Schizosaccharomyces pombe
    • Bähler J, Wu J, Longtine M, Shah N, McKenzie A, et al. (1998) Heterologous modules for efficient and versatile PCR-based gene targeting in Schizosaccharomyces pombe. Yeast 14: 943-951.
    • (1998) Yeast , vol.14 , pp. 943-951
    • Bähler, J.1    Wu, J.2    Longtine, M.3    Shah, N.4    McKenzie, A.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.