메뉴 건너뛰기




Volumn 13, Issue 9, 2012, Pages 11954-11973

The emerging roles of ATP-dependent chromatin remodeling enzymes in nucleotide excision repair

Author keywords

DNA damage accessibility; DNA repair; Nucleosome

Indexed keywords

ADENOSINE TRIPHOSPHATE; ATP DEPENDENT CHROMATIN REMODELING ENZYME; DNA DEPENDENT PROTEIN KINASE; IMITATION SWITCH; UNCLASSIFIED DRUG;

EID: 84866953868     PISSN: 16616596     EISSN: 14220067     Source Type: Journal    
DOI: 10.3390/ijms130911954     Document Type: Review
Times cited : (35)

References (119)
  • 1
  • 2
    • 84860381688 scopus 로고    scopus 로고
    • Higher-order chromatin structure: Bridging physics and biology
    • Fudenberg, G.; Mirny, L.A. Higher-order chromatin structure: Bridging physics and biology. Curr. Opin. Genet. Dev. 2012, 22, 115-124.
    • (2012) Curr. Opin. Genet. Dev , vol.22 , pp. 115-124
    • Fudenberg, G.1    Mirny, L.A.2
  • 3
    • 84857340459 scopus 로고    scopus 로고
    • Toward convergence of experimental studies and theoretical modeling of the chromatin fiber
    • Schlick, T.; Hayes, J.; Grigoryev, S. Toward convergence of experimental studies and theoretical modeling of the chromatin fiber. J. Biol. Chem. 2012, 287, 5183-5191.
    • (2012) J. Biol. Chem , vol.287 , pp. 5183-5191
    • Schlick, T.1    Hayes, J.2    Grigoryev, S.3
  • 6
    • 0037992395 scopus 로고    scopus 로고
    • The structure of DNA in the nucleosome core
    • Richmond, T.J.; Davey, C.A. The structure of DNA in the nucleosome core. Nature 2003, 423, 145-150.
    • (2003) Nature , vol.423 , pp. 145-150
    • Richmond, T.J.1    Davey, C.A.2
  • 7
    • 77954838715 scopus 로고    scopus 로고
    • Confining euchromatin/heterochromatin territory: Jumonji crosses the line
    • Tamaru, H. Confining euchromatin/heterochromatin territory: Jumonji crosses the line. Genes Dev. 2010, 24, 1465-1478.
    • (2010) Genes Dev , vol.24 , pp. 1465-1478
    • Tamaru, H.1
  • 8
    • 0344198456 scopus 로고    scopus 로고
    • Chromatin remodeling by ATP-dependent molecular machines
    • Lusser, A.; Kadonaga, J.T. Chromatin remodeling by ATP-dependent molecular machines. Bioessays 2003, 25, 1192-1200.
    • (2003) Bioessays , vol.25 , pp. 1192-1200
    • Lusser, A.1    Kadonaga, J.T.2
  • 10
    • 44449099142 scopus 로고    scopus 로고
    • ATP-dependent chromatin remodeling enzymes: Two heads are not better, just different
    • Racki, L.R.; Narlikar, G.J. ATP-dependent chromatin remodeling enzymes: Two heads are not better, just different. Curr. Opin. Genet. Dev. 2008, 18, 137-144.
    • (2008) Curr. Opin. Genet. Dev , vol.18 , pp. 137-144
    • Racki, L.R.1    Narlikar, G.J.2
  • 11
    • 79952802100 scopus 로고    scopus 로고
    • Chromatin: Bind at your own RSC
    • Buchler, N.E.; Bai, L. Chromatin: Bind at your own RSC. Curr. Biol. 2011, 21, R223-R225.
    • (2011) Curr. Biol , vol.21
    • Buchler, N.E.1    Bai, L.2
  • 12
    • 81055155906 scopus 로고    scopus 로고
    • Nucleosomes and the accessibility problem
    • Wang, X.; Bai, L.; Bryant, G.O.; Ptashne, M. Nucleosomes and the accessibility problem. Trends Genet. 2011, 27, 487-492.
    • (2011) Trends Genet , vol.27 , pp. 487-492
    • Wang, X.1    Bai, L.2    Bryant, G.O.3    Ptashne, M.4
  • 13
    • 34548544648 scopus 로고    scopus 로고
    • Chromatin remodeling and cancer, Part II: ATP-dependent chromatin remodeling
    • Wang, G.G.; Allis, C.D.; Chi, P. Chromatin remodeling and cancer, Part II: ATP-dependent chromatin remodeling. Trends Mol. Med. 2007, 13, 373-380.
    • (2007) Trends Mol. Med , vol.13 , pp. 373-380
    • Wang, G.G.1    Allis, C.D.2    Chi, P.3
  • 14
    • 79959653996 scopus 로고    scopus 로고
    • SWI/SNF nucleosome remodellers and cancer
    • Wilson, B.G.; Roberts, C.W. SWI/SNF nucleosome remodellers and cancer. Nat. Rev. Cancer 2011, 11, 481-492.
    • (2011) Nat. Rev. Cancer , vol.11 , pp. 481-492
    • Wilson, B.G.1    Roberts, C.W.2
  • 15
    • 79952022454 scopus 로고    scopus 로고
    • Detection of bulky DNA lesions: DDB2 at the interface of chromatin and DNA repair in eukaryotes
    • Jones, K.L.; Zhang, L.; Seldeen, K.L.; Gong, F. Detection of bulky DNA lesions: DDB2 at the interface of chromatin and DNA repair in eukaryotes. IUBMB Life 2010, 62, 803-811.
    • (2010) IUBMB Life , vol.62 , pp. 803-811
    • Jones, K.L.1    Zhang, L.2    Seldeen, K.L.3    Gong, F.4
  • 16
    • 84856278412 scopus 로고    scopus 로고
    • ATP-dependent chromatin remodeling in the DNA-damage response
    • Lans, H.; Marteijn, J.A.; Vermeulen, W. ATP-dependent chromatin remodeling in the DNA-damage response. Epigenet. Chromatin 2012, 5, 4.
    • (2012) Epigenet. Chromatin , vol.5 , pp. 4
    • Lans, H.1    Marteijn, J.A.2    Vermeulen, W.3
  • 17
    • 79451473121 scopus 로고    scopus 로고
    • Open, repair and close again: Chromatin dynamics and the response to UV-induced DNA damage
    • Palomera-Sanchez, Z.; Zurita, M. Open, repair and close again: Chromatin dynamics and the response to UV-induced DNA damage. DNA Repair 2011, 10, 119-125.
    • (2011) DNA Repair , vol.10 , pp. 119-125
    • Palomera-Sanchez, Z.1    Zurita, M.2
  • 18
    • 58149175665 scopus 로고    scopus 로고
    • Tilting at windmills? The nucleotide excision repair of chromosomal DNA
    • Waters, R.; Teng, Y.; Yu, Y.; Yu, S.; Reed, S.H. Tilting at windmills? The nucleotide excision repair of chromosomal DNA. DNA Repair 2009, 8, 146-152.
    • (2009) DNA Repair , vol.8 , pp. 146-152
    • Waters, R.1    Teng, Y.2    Yu, Y.3    Yu, S.4    Reed, S.H.5
  • 20
    • 65249112184 scopus 로고    scopus 로고
    • The molecular basis of chromatin dynamics during nucleotide excision repair
    • Zhang, L.; Jones, K.; Gong, F. The molecular basis of chromatin dynamics during nucleotide excision repair. Biochem. Cell Biol. 2009, 87, 265-272.
    • (2009) Biochem. Cell Biol , vol.87 , pp. 265-272
    • Zhang, L.1    Jones, K.2    Gong, F.3
  • 21
  • 22
    • 0018125018 scopus 로고
    • Nucleosome rearrangement in human chromatin during UV-induced DNA- reapir synthesis
    • Smerdon, M.J.; Lieberman, M.W. Nucleosome rearrangement in human chromatin during UV-induced DNA- reapir synthesis. Proc. Natl. Acad. Sci. USA 1978, 75, 4238-4241.
    • (1978) Proc. Natl. Acad. Sci. USA , vol.75 , pp. 4238-4241
    • Smerdon, M.J.1    Lieberman, M.W.2
  • 23
    • 62849083222 scopus 로고    scopus 로고
    • The emerging role of nuclear architecture in DNA repair and genome maintenance
    • Misteli, T.; Soutoglou, E. The emerging role of nuclear architecture in DNA repair and genome maintenance. Nat. Rev. Mol. Cell Biol. 2009, 10, 243-254.
    • (2009) Nat. Rev. Mol. Cell Biol , vol.10 , pp. 243-254
    • Misteli, T.1    Soutoglou, E.2
  • 24
    • 0032565523 scopus 로고    scopus 로고
    • Genomic instability: Environmental invasion and the enemies within
    • Hanawalt, P.C. Genomic instability: Environmental invasion and the enemies within. Mutat. Res. 1998, 400, 117-125.
    • (1998) Mutat. Res , vol.400 , pp. 117-125
    • Hanawalt, P.C.1
  • 25
    • 0035902108 scopus 로고    scopus 로고
    • Genome maintenance mechanisms for preventing cancer
    • Hoeijmakers, J.H. Genome maintenance mechanisms for preventing cancer. Nature 2001, 411, 366-374.
    • (2001) Nature , vol.411 , pp. 366-374
    • Hoeijmakers, J.H.1
  • 26
    • 14644433816 scopus 로고    scopus 로고
    • Ultraviolet radiation-mediated damage to cellular DNA
    • Cadet, J.; Sage, E.; Douki, T. Ultraviolet radiation-mediated damage to cellular DNA. Mutat. Res. 2005, 571, 3-17.
    • (2005) Mutat. Res , vol.571 , pp. 3-17
    • Cadet, J.1    Sage, E.2    Douki, T.3
  • 28
    • 0035495386 scopus 로고    scopus 로고
    • How nucleotide excision repair protects against cancer
    • Friedberg, E.C. How nucleotide excision repair protects against cancer. Nat. Rev. Cancer 2001, 1, 22-33.
    • (2001) Nat. Rev. Cancer , vol.1 , pp. 22-33
    • Friedberg, E.C.1
  • 29
    • 33751277027 scopus 로고    scopus 로고
    • Nucleotide excision repair and cancer
    • Leibeling, D.; Laspe, P.; Emmert, S. Nucleotide excision repair and cancer. J. Mol. Histol. 2006, 37, 225-238.
    • (2006) J. Mol. Histol , vol.37 , pp. 225-238
    • Leibeling, D.1    Laspe, P.2    Emmert, S.3
  • 30
    • 0037115936 scopus 로고    scopus 로고
    • Subpathways of nucleotide excision repair and their regulation
    • Hanawalt, P.C. Subpathways of nucleotide excision repair and their regulation. Oncogene 2002, 21,8949-8956.
    • (2002) Oncogene , vol.21 , pp. 8949-8956
    • Hanawalt, P.C.1
  • 32
    • 26944448202 scopus 로고    scopus 로고
    • Recognition of RNA polymerase II and transcription bubbles by XPG, CSB, and TFIIH: Insights for transcription-coupled repair and Cockayne Syndrome
    • Sarker, A.H.; Tsutakawa, S.E.; Kostek, S.; Ng, C.; Shin, D.S.; Peris, M.; Campeau, E.; Tainer, J.A.; Nogales, E.; Cooper, P.K. Recognition of RNA polymerase II and transcription bubbles by XPG, CSB, and TFIIH: Insights for transcription-coupled repair and Cockayne Syndrome. Mol. Cell 2005, 20, 187-198.
    • (2005) Mol. Cell , vol.20 , pp. 187-198
    • Sarker, A.H.1    Tsutakawa, S.E.2    Kostek, S.3    Ng, C.4    Shin, D.S.5    Peris, M.6    Campeau, E.7    Tainer, J.A.8    Nogales, E.9    Cooper, P.K.10
  • 33
    • 84860330507 scopus 로고    scopus 로고
    • Mutations in UVSSA cause UV-sensitive syndrome and impair RNA polymerase IIo processing in transcription-coupled nucleotide-excision repair
    • Nakazawa, Y.; Sasaki, K.; Mitsutake, N.; Matsuse, M.; Shimada, M.; Nardo, T.; Takahashi, Y.; Ohyama, K.; Ito, K.; Mishima, H. et al. Mutations in UVSSA cause UV-sensitive syndrome and impair RNA polymerase IIo processing in transcription-coupled nucleotide-excision repair. Nat. Genet. 2012, 44, 586-592.
    • (2012) Nat. Genet , vol.44 , pp. 586-592
    • Nakazawa, Y.1    Sasaki, K.2    Mitsutake, N.3    Matsuse, M.4    Shimada, M.5    Nardo, T.6    Takahashi, Y.7    Ohyama, K.8    Ito, K.9    Mishima, H.10
  • 37
    • 34948892722 scopus 로고    scopus 로고
    • Recognition of DNA damage by the Rad4 nucleotide excision repair protein
    • Min, J.H.; Pavletich, N.P. Recognition of DNA damage by the Rad4 nucleotide excision repair protein. Nature 2007, 449, 570-575.
    • (2007) Nature , vol.449 , pp. 570-575
    • Min, J.H.1    Pavletich, N.P.2
  • 38
    • 74549171725 scopus 로고    scopus 로고
    • The long unwinding road: XPB and XPD helicases in damaged DNA opening
    • Oksenych, V.; Coin, F. The long unwinding road: XPB and XPD helicases in damaged DNA opening. Cell Cycle 2010, 9, 90-96.
    • (2010) Cell Cycle , vol.9 , pp. 90-96
    • Oksenych, V.1    Coin, F.2
  • 39
    • 0030768038 scopus 로고    scopus 로고
    • Nucleotide excision repair in mammalian cells
    • Wood, R.D. Nucleotide excision repair in mammalian cells. J. Biol. Chem. 1997, 272, 23465-23468.
    • (1997) J. Biol. Chem , vol.272 , pp. 23465-23468
    • Wood, R.D.1
  • 40
    • 21844434955 scopus 로고    scopus 로고
    • Nucleotide excision repair in chromatin and the right of entry
    • Gong, F.; Kwon, Y.; Smerdon, M.J. Nucleotide excision repair in chromatin and the right of entry. DNA Repair 2005, 4, 884-896.
    • (2005) DNA Repair , vol.4 , pp. 884-896
    • Gong, F.1    Kwon, Y.2    Smerdon, M.J.3
  • 41
    • 0034461931 scopus 로고    scopus 로고
    • DNA damage in the nucleosome core is refractory to repair by human excision nuclease
    • Hara, R.; Mo, J.; Sancar, A. DNA damage in the nucleosome core is refractory to repair by human excision nuclease. Mol. Cell Biol. 2000, 20, 9173-9181.
    • (2000) Mol. Cell Biol , vol.20 , pp. 9173-9181
    • Hara, R.1    Mo, J.2    Sancar, A.3
  • 42
    • 0036166206 scopus 로고    scopus 로고
    • When repair meets chromatin
    • Green, C.M.; Almouzni, G. When repair meets chromatin. EMBORep. 2002, 3, 28-33.
    • (2002) EMBORep , vol.3 , pp. 28-33
    • Green, C.M.1    Almouzni, G.2
  • 43
  • 44
    • 33744781568 scopus 로고    scopus 로고
    • Histone H3 and H4 ubiquitylation by the CUL4-DDB-ROC1 ubiquitin ligase facilitates cellular response to DNA damage
    • Wang, H.; Zhai, L.; Xu, J.; Joo, H.Y.; Jackson, S.; Erdjument-Bromage, H.; Tempst, P.; Xiong, Y.; Zhang, Y. Histone H3 and H4 ubiquitylation by the CUL4-DDB-ROC1 ubiquitin ligase facilitates cellular response to DNA damage. Mol. Cell 2006, 22, 383-394.
    • (2006) Mol. Cell , vol.22 , pp. 383-394
    • Wang, H.1    Zhai, L.2    Xu, J.3    Joo, H.Y.4    Jackson, S.5    Erdjument-Bromage, H.6    Tempst, P.7    Xiong, Y.8    Zhang, Y.9
  • 45
    • 33644536070 scopus 로고    scopus 로고
    • The DDB1-CUL4ADDB2 ubiquitin ligase is deficient in xeroderma pigmentosum group E and Targets Histone H2A At UV-damaged DNA Sites
    • Kapetanaki, M.G.; Guerrero-Santoro, J.; Bisi, D.C.; Hsieh, C.L.; Rapic-Otrin, V.; Levine, A.S. The DDB1-CUL4ADDB2 ubiquitin ligase is deficient in xeroderma pigmentosum group E and targets histone H2A at UV-damaged DNA sites. Proc. Natl. Acad. Sci. USA 2006, 103, 2588-2593.
    • (2006) Proc. Natl. Acad. Sci. USA , vol.103 , pp. 2588-2593
    • Kapetanaki, M.G.1    Guerrero-Santoro, J.2    Bisi, D.C.3    Hsieh, C.L.4    Rapic-Otrin, V.5    Levine, A.S.6
  • 46
    • 77950443318 scopus 로고    scopus 로고
    • NER factors are recruited to active promoters and facilitate chromatin modification for transcription in the absence of exogenous genotoxic attack
    • Le, M.N.; Mota-Fernandes, D.; Velez-Cruz, R.; Iltis, I.; Biard, D.; Egly, J.M. NER factors are recruited to active promoters and facilitate chromatin modification for transcription in the absence of exogenous genotoxic attack. Mol. Cell 2010, 38, 54-66.
    • (2010) Mol. Cell , vol.38 , pp. 54-66
    • Le, M.N.1    Mota-Fernandes, D.2    Velez-Cruz, R.3    Iltis, I.4    Biard, D.5    Egly, J.M.6
  • 47
    • 38049178545 scopus 로고    scopus 로고
    • Transcription-coupled nucleotide excision repair in mammalian cells: Molecular mechanisms and biological effects
    • Fousteri, M.; Mullenders, L.H. Transcription-coupled nucleotide excision repair in mammalian cells: Molecular mechanisms and biological effects. Cell Res. 2008, 18, 73-84.
    • (2008) Cell Res , vol.18 , pp. 73-84
    • Fousteri, M.1    Mullenders, L.H.2
  • 48
    • 0028242355 scopus 로고
    • Determination of minimum substrate size for human excinuclease
    • Huang, J.C.; Sancar, A. Determination of minimum substrate size for human excinuclease. J. Biol. Chem. 1994, 269, 19034-19040.
    • (1994) J. Biol. Chem , vol.269 , pp. 19034-19040
    • Huang, J.C.1    Sancar, A.2
  • 49
    • 0036785614 scopus 로고    scopus 로고
    • The SWI/SNF chromatin-remodeling factor stimulates repair by human excision nuclease in the mononucleosome core particle
    • Hara, R.; Sancar, A. The SWI/SNF chromatin-remodeling factor stimulates repair by human excision nuclease in the mononucleosome core particle. Mol. Cell Biol. 2002, 22, 6779-6787.
    • (2002) Mol. Cell Biol , vol.22 , pp. 6779-6787
    • Hara, R.1    Sancar, A.2
  • 50
    • 0038656433 scopus 로고    scopus 로고
    • Effect of damage type on stimulation of human excision nuclease by SWI/SNF chromatin remodeling factor
    • Hara, R.; Sancar, A. Effect of damage type on stimulation of human excision nuclease by SWI/SNF chromatin remodeling factor. Mol. Cell Biol. 2003, 23, 4121-4125.
    • (2003) Mol. Cell Biol , vol.23 , pp. 4121-4125
    • Hara, R.1    Sancar, A.2
  • 51
    • 0035901558 scopus 로고    scopus 로고
    • ATP-dependent chromatin remodeling facilitates nucleotide excision repair of UV-induced DNA lesions in synthetic dinucleosomes
    • Ura, K.; Araki, M.; Saeki, H.; Masutani, C.; Ito, T.; Iwai, S.; Mizukoshi, T.; Kaneda, Y.; Hanaoka, F. ATP-dependent chromatin remodeling facilitates nucleotide excision repair of UV-induced DNA lesions in synthetic dinucleosomes. EMBO J. 2001, 20, 2004-2014.
    • (2001) EMBO J , vol.20 , pp. 2004-2014
    • Ura, K.1    Araki, M.2    Saeki, H.3    Masutani, C.4    Ito, T.5    Iwai, S.6    Mizukoshi, T.7    Kaneda, Y.8    Hanaoka, F.9
  • 52
    • 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, B.R.; Laurent, B.C. Distinct roles for the RSC and Swi/Snf ATP-dependent chromatin remodelers in DNA double-strand break repair. Genes Dev. 2005, 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
  • 53
    • 83255185774 scopus 로고    scopus 로고
    • Mammalian Ino80 mediates double-strand break repair through its role in DNA end strand resection
    • Gospodinov, A.; Vaissiere, T.; Krastev, D.B.; Legube, G.; Anachkova, B.; Herceg, Z. Mammalian Ino80 mediates double-strand break repair through its role in DNA end strand resection. Mol. Cell Biol. 2011, 31, 4735-4745.
    • (2011) Mol. Cell Biol , vol.31 , pp. 4735-4745
    • Gospodinov, A.1    Vaissiere, T.2    Krastev, D.B.3    Legube, G.4    Anachkova, B.5    Herceg, Z.6
  • 54
    • 80053555789 scopus 로고    scopus 로고
    • More than just a focus: The chromatin response to DNA damage and its role in genome integrity maintenance
    • Lukas, J.; Lukas, C.; Bartek, J. More than just a focus: The chromatin response to DNA damage and its role in genome integrity maintenance. Nat. Cell Biol. 2011, 13, 1161-1169.
    • (2011) Nat. Cell Biol , vol.13 , pp. 1161-1169
    • Lukas, J.1    Lukas, C.2    Bartek, J.3
  • 55
    • 33748272677 scopus 로고    scopus 로고
    • Interplay between Ino80 and Swr1 chromatin remodeling enzymes regulates cell cycle checkpoint adaptation in response to DNA damage
    • Papamichos-Chronakis, M.; Krebs, J.E.; Peterson, C.L. Interplay between Ino80 and Swr1 chromatin remodeling enzymes regulates cell cycle checkpoint adaptation in response to DNA damage. Genes Dev. 2006, 20, 2437-2449.
    • (2006) Genes Dev , vol.20 , pp. 2437-2449
    • Papamichos-Chronakis, M.1    Krebs, J.E.2    Peterson, C.L.3
  • 56
    • 77956870690 scopus 로고    scopus 로고
    • Regulation of DNA-damage responses and cell-cycle progression by the chromatin remodelling factor CHD4
    • Polo, S.E.; Kaidi, A.; Baskcomb, L.; Galanty, Y.; Jackson, S.P. Regulation of DNA-damage responses and cell-cycle progression by the chromatin remodelling factor CHD4. EMBO J. 2010, 3130-3139.
    • (2010) EMBO J , pp. 3130-3139
    • Polo, S.E.1    Kaidi, A.2    Baskcomb, L.3    Galanty, Y.4    Jackson, S.P.5
  • 57
    • 70149105916 scopus 로고    scopus 로고
    • Recombinational repair within heterochromatin requires ATP-dependent chromatin remodeling
    • Sinha, M.; Watanabe, S.; Johnson, A.; Moazed, D.; Peterson, C.L. Recombinational repair within heterochromatin requires ATP-dependent chromatin remodeling. Cell 2009, 138, 1109-1121.
    • (2009) Cell , vol.138 , pp. 1109-1121
    • Sinha, M.1    Watanabe, S.2    Johnson, A.3    Moazed, D.4    Peterson, C.L.5
  • 58
    • 10944233962 scopus 로고    scopus 로고
    • Recruitment of the IN080 complex by H2A phosphorylation links ATP-dependent chromatin remodeling with DNA double-strand break repair
    • Van Attikum, H.; Fritsch, O.; Hohn, B.; Gasser, S.M. Recruitment of the IN080 complex by H2A phosphorylation links ATP-dependent chromatin remodeling with DNA double-strand break repair. Cell 2004, 119, 777-788.
    • (2004) Cell , vol.119 , pp. 777-788
    • van Attikum, H.1    Fritsch, O.2    Hohn, B.3    Gasser, S.M.4
  • 59
    • 33749520485 scopus 로고    scopus 로고
    • Rad4-Rad23 interaction with SWI/SNF links ATP-dependent chromatin remodeling with nucleotide excision repair
    • Gong, F.; Fahy, D.; Smerdon, M.J. Rad4-Rad23 interaction with SWI/SNF links ATP-dependent chromatin remodeling with nucleotide excision repair. Nat. Struct. Mol. Biol. 2006, 13, 902-907.
    • (2006) Nat. Struct. Mol. Biol , vol.13 , pp. 902-907
    • Gong, F.1    Fahy, D.2    Smerdon, M.J.3
  • 60
    • 78650089978 scopus 로고    scopus 로고
    • The Ino80 chromatin-remodeling complex restores chromatin structure during UV DNA damage repair
    • Sarkar, S.; Kiely, R.; McHugh, P.J. The Ino80 chromatin-remodeling complex restores chromatin structure during UV DNA damage repair. J. Cell Biol. 2010, 191, 1061-1068.
    • (2010) J. Cell Biol , vol.191 , pp. 1061-1068
    • Sarkar, S.1    Kiely, R.2    McHugh, P.J.3
  • 61
    • 0026641776 scopus 로고
    • Yeast SNF/SWI transcriptional activators and the SPT/SIN chromatin connection
    • Winston, F.; Carlson, M. Yeast SNF/SWI transcriptional activators and the SPT/SIN chromatin connection. Trends Genet. 1992, 8, 387-391.
    • (1992) Trends Genet , vol.8 , pp. 387-391
    • Winston, F.1    Carlson, M.2
  • 62
    • 0028239595 scopus 로고
    • Two human homologues of Saccharomyces cerevisiae SWI2/SNF2 and Drosophila brahma are transcriptional coactivators cooperating with the estrogen receptor and the retinoic acid receptor
    • Chiba, H.; Muramatsu, M.; Nomoto, A.; Kato, H. Two human homologues of Saccharomyces cerevisiae SWI2/SNF2 and Drosophila brahma are transcriptional coactivators cooperating with the estrogen receptor and the retinoic acid receptor. Nucleic Acids Res. 1994, 22, 1815-1820.
    • (1994) Nucleic Acids Res , vol.22 , pp. 1815-1820
    • Chiba, H.1    Muramatsu, M.2    Nomoto, A.3    Kato, H.4
  • 63
    • 0029008811 scopus 로고
    • The Drosophila snr1 and brm proteins are related to yeast SWI/SNF proteins and are components of a large protein complex
    • Dingwall, A.K.; Beek, S.J.; McCallum, C.M.; Tamkun, J.W.; Kalpana, G.V.; Goff, S.P.; Scott, M.P. The Drosophila snr1 and brm proteins are related to yeast SWI/SNF proteins and are components of a large protein complex. Mol. Biol. Cell 1995, 6, 777-791.
    • (1995) Mol. Biol. Cell , vol.6 , pp. 777-791
    • Dingwall, A.K.1    Beek, S.J.2    McCallum, C.M.3    Tamkun, J.W.4    Kalpana, G.V.5    Goff, S.P.6    Scott, M.P.7
  • 64
    • 67650725820 scopus 로고    scopus 로고
    • The biology of chromatin remodeling complexes
    • Clapier, C.R.; Cairns, B.R. The biology of chromatin remodeling complexes. Annu. Rev. Biochem. 2009, 78, 273-304.
    • (2009) Annu. Rev. Biochem , vol.78 , pp. 273-304
    • Clapier, C.R.1    Cairns, B.R.2
  • 65
    • 54549094970 scopus 로고    scopus 로고
    • The Swi2/Snf2 bromodomain is important for the full binding and remodeling activity of the SWI/SNF complex on H3- and H4-acetylated nucleosomes
    • Awad, S.; Hassan, A.H. The Swi2/Snf2 bromodomain is important for the full binding and remodeling activity of the SWI/SNF complex on H3- and H4-acetylated nucleosomes. Ann. N. Y. Acad. Sci. 2008, 1138, 366-375.
    • (2008) Ann. N. Y. Acad. Sci , vol.1138 , pp. 366-375
    • Awad, S.1    Hassan, A.H.2
  • 66
    • 14544308853 scopus 로고    scopus 로고
    • Composition and functional specificity of SWI2/SNF2 class chromatin remodeling complexes
    • Mohrmann, L.; Verrijzer, C.P. Composition and functional specificity of SWI2/SNF2 class chromatin remodeling complexes. Biochim. Biophys. Acta 2005, 1681, 59-73.
    • (2005) Biochim. Biophys. Acta , vol.1681 , pp. 59-73
    • Mohrmann, L.1    Verrijzer, C.P.2
  • 67
    • 15244346915 scopus 로고    scopus 로고
    • Swapping function of two chromatin remodeling complexes
    • Fan, H.Y.; Trotter, K.W.; Archer, T.K.; Kingston, R.E. Swapping function of two chromatin remodeling complexes. Mol. Cell 2005, 17, 805-815.
    • (2005) Mol. Cell , vol.17 , pp. 805-815
    • Fan, H.Y.1    Trotter, K.W.2    Archer, T.K.3    Kingston, R.E.4
  • 71
    • 26944461283 scopus 로고    scopus 로고
    • Chromatin remodeling through directional DNA translocation from an internal nucleosomal site
    • Saha, A.; Wittmeyer, J.; Cairns, B.R. Chromatin remodeling through directional DNA translocation from an internal nucleosomal site. Nat. Struct. Mol. Biol. 2005, 12, 747-755.
    • (2005) Nat. Struct. Mol. Biol , vol.12 , pp. 747-755
    • Saha, A.1    Wittmeyer, J.2    Cairns, B.R.3
  • 72
    • 0038381469 scopus 로고    scopus 로고
    • Chromatin remodeling activities act on UV-damaged nucleosomes and modulate DNA damage accessibility to photolyase
    • Gaillard, H.; Fitzgerald, D.J.; Smith, C.L.; Peterson, C.L.; Richmond, T.J.; Thoma, F. Chromatin remodeling activities act on UV-damaged nucleosomes and modulate DNA damage accessibility to photolyase. J. Biol. Chem. 2003, 278, 17655-17663.
    • (2003) J. Biol. Chem , vol.278 , pp. 17655-17663
    • Gaillard, H.1    Fitzgerald, D.J.2    Smith, C.L.3    Peterson, C.L.4    Richmond, T.J.5    Thoma, F.6
  • 73
    • 71949103959 scopus 로고    scopus 로고
    • Human SNF5/INI1, a component of the human SWI/SNF chromatin remodeling complex, promotes nucleotide excision repair by influencing ATM recruitment and downstream H2AX phosphorylation
    • Ray, A.; Mir, S.N.; Wani, G.; Zhao, Q.; Battu, A.; Zhu, Q.; Wang, Q.E.; Wani, A.A. Human SNF5/INI1, a component of the human SWI/SNF chromatin remodeling complex, promotes nucleotide excision repair by influencing ATM recruitment and downstream H2AX phosphorylation. Mol. Cell Biol. 2009, 29, 6206-6219.
    • (2009) Mol. Cell Biol , vol.29 , pp. 6206-6219
    • Ray, A.1    Mir, S.N.2    Wani, G.3    Zhao, Q.4    Battu, A.5    Zhu, Q.6    Wang, Q.E.7    Wani, A.A.8
  • 74
    • 71049159100 scopus 로고    scopus 로고
    • Modulation of nucleotide excision repair by mammalian SWI/SNF chromatin-remodeling complex
    • Zhao, Q.; Wang, Q.E.; Ray, A.; Wani, G.; Han, C.; Milum, K.; Wani, A.A. Modulation of nucleotide excision repair by mammalian SWI/SNF chromatin-remodeling complex. J. Biol. Chem. 2009, 284, 30424-30432.
    • (2009) J. Biol. Chem , vol.284 , pp. 30424-30432
    • Zhao, Q.1    Wang, Q.E.2    Ray, A.3    Wani, G.4    Han, C.5    Milum, K.6    Wani, A.A.7
  • 75
    • 43549092406 scopus 로고    scopus 로고
    • Role of the mammalian SWI/SNF chromatin remodeling complex in the cellular response to UV damage
    • Gong, F.; Fahy, D.; Liu, H.; Wang, W.; Smerdon, M.J. Role of the mammalian SWI/SNF chromatin remodeling complex in the cellular response to UV damage. Cell Cycle 2008, 7, 1067-1074.
    • (2008) Cell Cycle , vol.7 , pp. 1067-1074
    • Gong, F.1    Fahy, D.2    Liu, H.3    Wang, W.4    Smerdon, M.J.5
  • 76
    • 0029562736 scopus 로고
    • Purification and properties of an ATP-dependent nucleosome remodeling factor
    • Tsukiyama, T.; Wu, C. Purification and properties of an ATP-dependent nucleosome remodeling factor. Cell 1995, 83, 1011-1020.
    • (1995) Cell , vol.83 , pp. 1011-1020
    • Tsukiyama, T.1    Wu, C.2
  • 78
    • 36849004886 scopus 로고    scopus 로고
    • Domain architecture of the catalytic subunit in the ISW2-nucleosome complex
    • Dang, W.; Bartholomew, B. Domain architecture of the catalytic subunit in the ISW2-nucleosome complex. Mol. Cell Biol. 2007, 27, 8306-8317.
    • (2007) Mol. Cell Biol , vol.27 , pp. 8306-8317
    • Dang, W.1    Bartholomew, B.2
  • 79
    • 79953652165 scopus 로고    scopus 로고
    • Binding kinetics of human ISWI chromatin-remodelers to DNA repair sites elucidate their target location mechanism
    • Erdel, F.; Rippe, K. Binding kinetics of human ISWI chromatin-remodelers to DNA repair sites elucidate their target location mechanism. Nucleus 2011, 2, 105-112.
    • (2011) Nucleus , vol.2 , pp. 105-112
    • Erdel, F.1    Rippe, K.2
  • 80
    • 0141922979 scopus 로고    scopus 로고
    • Crystal structure and functional analysis of a nucleosome recognition module of the remodeling factor ISWI
    • Grune, T.; Brzeski, J.; Eberharter, A.; Clapier, C.R.; Corona, D.F.; Becker, P.B.; Muller, C.W. Crystal structure and functional analysis of a nucleosome recognition module of the remodeling factor ISWI. Mol. Cell 2003, 12, 449-460.
    • (2003) Mol. Cell , vol.12 , pp. 449-460
    • Grune, T.1    Brzeski, J.2    Eberharter, A.3    Clapier, C.R.4    Corona, D.F.5    Becker, P.B.6    Muller, C.W.7
  • 82
    • 77956642227 scopus 로고    scopus 로고
    • The nucleosome remodeling factor ISWI functionally interacts with an evolutionarily conserved network of cellular factors
    • Arancio, W.; Onorati, M.C.; Burgio, G.; Collesano, M.; Ingrassia, A.M.; Genovese, S.I.; Fanto, M.; Corona, D.F. The nucleosome remodeling factor ISWI functionally interacts with an evolutionarily conserved network of cellular factors. Genetics 2010, 185, 129-140.
    • (2010) Genetics , vol.185 , pp. 129-140
    • Arancio, W.1    Onorati, M.C.2    Burgio, G.3    Collesano, M.4    Ingrassia, A.M.5    Genovese, S.I.6    Fanto, M.7    Corona, D.F.8
  • 84
    • 34147102171 scopus 로고    scopus 로고
    • Mechanisms of ATP dependent chromatin remodeling
    • Gangaraju, V.K.; Bartholomew, B. Mechanisms of ATP dependent chromatin remodeling. Mutat. Res. 2007, 618, 3-17.
    • (2007) Mutat. Res , vol.618 , pp. 3-17
    • Gangaraju, V.K.1    Bartholomew, B.2
  • 85
    • 0345276461 scopus 로고    scopus 로고
    • Chromatin remodeling in vivo: Evidence for a nucleosome sliding mechanism
    • Fazzio, T.G.; Tsukiyama, T. Chromatin remodeling in vivo: Evidence for a nucleosome sliding mechanism. Mol. Cell 2003, 12, 1333-1340.
    • (2003) Mol. Cell , vol.12 , pp. 1333-1340
    • Fazzio, T.G.1    Tsukiyama, T.2
  • 87
    • 77953193047 scopus 로고    scopus 로고
    • Involvement of global genome repair, transcription coupled repair, and chromatin remodeling in UV DNA damage response changes during development
    • Lans, H.; Marteijn, J.A.; Schumacher, B.; Hoeijmakers, J.H.; Jansen, G.; Vermeulen, W. Involvement of global genome repair, transcription coupled repair, and chromatin remodeling in UV DNA damage response changes during development. PLoS Genet. 2010, 6, e1000941.
    • (2010) PLoS Genet , vol.e1000941 , pp. 6
    • Lans, H.1    Marteijn, J.A.2    Schumacher, B.3    Hoeijmakers, J.H.4    Jansen, G.5    Vermeulen, W.6
  • 88
    • 0034601464 scopus 로고    scopus 로고
    • A chromatin remodelling complex involved in transcription and DNA processing
    • Shen, X.; Mizuguchi, G.; Hamiche, A.; Wu, C. A chromatin remodelling complex involved in transcription and DNA processing. Nature 2000, 406, 541-544.
    • (2000) Nature , vol.406 , pp. 541-544
    • Shen, X.1    Mizuguchi, G.2    Hamiche, A.3    Wu, C.4
  • 89
    • 78651510784 scopus 로고    scopus 로고
    • Global regulation of H2A.Z localization by the INO80 chromatin-remodeling enzyme is essential for genome integrity
    • Papamichos-Chronakis, M.; Watanabe, S.; Rando, O.J.; Peterson, C.L. Global regulation of H2A.Z localization by the INO80 chromatin-remodeling enzyme is essential for genome integrity. Cell 2011, 144, 200-213.
    • (2011) Cell , vol.144 , pp. 200-213
    • Papamichos-Chronakis, M.1    Watanabe, S.2    Rando, O.J.3    Peterson, C.L.4
  • 90
    • 33750741948 scopus 로고    scopus 로고
    • Purification and assay of the human INO80 and SRCAP chromatin remodeling complexes
    • Cai, Y.; Jin, J.; Gottschalk, A.J.; Yao, T.; Conaway, J.W.; Conaway, R.C. Purification and assay of the human INO80 and SRCAP chromatin remodeling complexes. Methods 2006, 40, 312-317.
    • (2006) Methods , vol.40 , pp. 312-317
    • Cai, Y.1    Jin, J.2    Gottschalk, A.J.3    Yao, T.4    Conaway, J.W.5    Conaway, R.C.6
  • 92
    • 0033010289 scopus 로고    scopus 로고
    • The product of the SNF2/SWI2 paralogue INO80 of Saccharomyces cerevisiae required for efficient expression of various yeast structural genes is part of a high-molecular-weight protein complex
    • Ebbert, R.; Birkmann, A.; Schuller, H.J. The product of the SNF2/SWI2 paralogue INO80 of Saccharomyces cerevisiae required for efficient expression of various yeast structural genes is part of a high-molecular-weight protein complex. Mol. Microbiol. 1999, 32, 741-751.
    • (1999) Mol. Microbiol , vol.32 , pp. 741-751
    • Ebbert, R.1    Birkmann, A.2    Schuller, H.J.3
  • 93
  • 94
    • 41649111513 scopus 로고    scopus 로고
    • The Ino80 chromatin-remodeling enzyme regulates replisome function and stability
    • Papamichos-Chronakis, M.; Peterson, C.L. The Ino80 chromatin-remodeling enzyme regulates replisome function and stability. Nat. Struct. Mol. Biol. 2008, 15, 338-345.
    • (2008) Nat. Struct. Mol. Biol , vol.15 , pp. 338-345
    • Papamichos-Chronakis, M.1    Peterson, C.L.2
  • 95
    • 78049241459 scopus 로고    scopus 로고
    • INO80 chromatin remodeling complex promotes the removal of UV lesions by the nucleotide excision repair pathway
    • Jiang, Y.; Wang, X.; Bao, S.; Guo, R.; Johnson, D.G.; Shen, X.; Li, L. INO80 chromatin remodeling complex promotes the removal of UV lesions by the nucleotide excision repair pathway. Proc. Natl. Acad. Sci. USA 2010, 107, 17274-17279.
    • (2010) Proc. Natl. Acad. Sci. USA , vol.107 , pp. 17274-17279
    • Jiang, Y.1    Wang, X.2    Bao, S.3    Guo, R.4    Johnson, D.G.5    Shen, X.6    Li, L.7
  • 96
    • 77955982287 scopus 로고    scopus 로고
    • Proficient repair in chromatin remodeling defective ino80 mutants of Saccharomyces cerevisiae highlights replication defects as the main contributor to DNA damage sensitivity
    • Czaja, W.; Bespalov, V.A.; Hinz, J.M.; Smerdon, M.J. Proficient repair in chromatin remodeling defective ino80 mutants of Saccharomyces cerevisiae highlights replication defects as the main contributor to DNA damage sensitivity. DNA Repair 2010, 9, 976-984.
    • (2010) DNA Repair , vol.9 , pp. 976-984
    • Czaja, W.1    Bespalov, V.A.2    Hinz, J.M.3    Smerdon, M.J.4
  • 97
    • 0029157378 scopus 로고
    • Evolution of the SNF2 family of proteins: Subfamilies with distinct sequences and functions
    • Eisen, J.A.; Sweder, K.S.; Hanawalt, P.C. Evolution of the SNF2 family of proteins: Subfamilies with distinct sequences and functions. Nucleic Acids Res. 1995, 23, 2715-2723.
    • (1995) Nucleic Acids Res , vol.23 , pp. 2715-2723
    • Eisen, J.A.1    Sweder, K.S.2    Hanawalt, P.C.3
  • 98
    • 0030822591 scopus 로고    scopus 로고
    • Cockayne syndrome group B protein enhances elongation by RNA polymerase II
    • Selby, C.P.; Sancar, A. Cockayne syndrome group B protein enhances elongation by RNA polymerase II. Proc. Natl. Acad. Sci. USA 1997, 94, 11205-11209.
    • (1997) Proc. Natl. Acad. Sci. USA , vol.94 , pp. 11205-11209
    • Selby, C.P.1    Sancar, A.2
  • 99
    • 69949098944 scopus 로고    scopus 로고
    • Neuropathology of Cockayne syndrome: Evidence for impaired development, premature aging, and neurodegeneration
    • Weidenheim, K.M.; Dickson, D.W.; Rapin, I. Neuropathology of Cockayne syndrome: Evidence for impaired development, premature aging, and neurodegeneration. Mech. Ageing Dev. 2009, 130, 619-636.
    • (2009) Mech. Ageing Dev , vol.130 , pp. 619-636
    • Weidenheim, K.M.1    Dickson, D.W.2    Rapin, I.3
  • 100
    • 77950513763 scopus 로고    scopus 로고
    • Rad26p, a transcription-coupled repair factor, is recruited to the site of DNA lesion in an elongating RNA polymerase II-dependent manner
    • Malik, S.; Chaurasia, P.; Lahudkar, S.; Durairaj, G.; Shukla, A.; Bhaumik, S.R. Rad26p, a transcription-coupled repair factor, is recruited to the site of DNA lesion in an elongating RNA polymerase II-dependent manner in vivo. Nucleic Acids Res. 2010, 38, 1461-1477.
    • (2010) In Vivo. Nucleic Acids Res , vol.38 , pp. 1461-1477
    • Malik, S.1    Chaurasia, P.2    Lahudkar, S.3    Durairaj, G.4    Shukla, A.5    Bhaumik, S.R.6
  • 101
    • 0030667078 scopus 로고    scopus 로고
    • Recruitment of the putative transcription-repair coupling factor CSB/ERCC6 to RNA polymerase II elongation complexes
    • Tantin, D.; Kansal, A.; Carey, M. Recruitment of the putative transcription-repair coupling factor CSB/ERCC6 to RNA polymerase II elongation complexes. Mol. Cell Biol. 1997, 17, 6803-6814.
    • (1997) Mol. Cell Biol , vol.17 , pp. 6803-6814
    • Tantin, D.1    Kansal, A.2    Carey, M.3
  • 103
    • 74749084156 scopus 로고    scopus 로고
    • UV-induced association of the CSB remodeling protein with chromatin requires ATP-dependent relief of N-terminal autorepression. Mol
    • Lake, R.J.; Geyko, A.; Hemashettar, G.; Zhao, Y.; Fan, H.Y. UV-induced association of the CSB remodeling protein with chromatin requires ATP-dependent relief of N-terminal autorepression. Mol. Cell2010, 37, 235-246.
    • Cell2010 , vol.37 , pp. 235-246
    • Lake, R.J.1    Geyko, A.2    Hemashettar, G.3    Zhao, Y.4    Fan, H.Y.5
  • 104
    • 79959484677 scopus 로고    scopus 로고
    • Signals and combinatorial functions of histone modifications
    • Suganuma, T.; Workman, J.L. Signals and combinatorial functions of histone modifications. Annu. Rev. Biochem. 2011, 80, 473-499.
    • (2011) Annu. Rev. Biochem , vol.80 , pp. 473-499
    • Suganuma, T.1    Workman, J.L.2
  • 105
    • 70349731733 scopus 로고    scopus 로고
    • Ubiquitination of histone H2B regulates chromatin dynamics by enhancing nucleosome stability
    • Chandrasekharan, M.B.; Huang, F.; Sun, Z.W. Ubiquitination of histone H2B regulates chromatin dynamics by enhancing nucleosome stability. Proc. Natl. Acad. Sci. USA 2009, 106, 16686-16691.
    • (2009) Proc. Natl. Acad. Sci. USA , vol.106 , pp. 16686-16691
    • Chandrasekharan, M.B.1    Huang, F.2    Sun, Z.W.3
  • 106
    • 80455162312 scopus 로고    scopus 로고
    • Genome-wide function of H2B ubiquitylation in promoter and genic regions
    • Batta, K.; Zhang, Z.; Yen, K.; Goffman, D.B.; Pugh, B.F. Genome-wide function of H2B ubiquitylation in promoter and genic regions. Genes Dev. 2011, 25, 2254-2265.
    • (2011) Genes Dev , vol.25 , pp. 2254-2265
    • Batta, K.1    Zhang, Z.2    Yen, K.3    Goffman, D.B.4    Pugh, B.F.5
  • 107
    • 32444434989 scopus 로고    scopus 로고
    • Histone H4-K16 acetylation controls chromatin structure and protein interactions
    • Shogren-Knaak, M.; Ishii, H.; Sun, J.M.; Pazin, M.J.; Davie, J.R.; Peterson, C.L. Histone H4-K16 acetylation controls chromatin structure and protein interactions. Science 2006, 311, 844-847.
    • (2006) Science , vol.311 , pp. 844-847
    • Shogren-Knaak, M.1    Ishii, H.2    Sun, J.M.3    Pazin, M.J.4    Davie, J.R.5    Peterson, C.L.6
  • 108
    • 79954416946 scopus 로고    scopus 로고
    • Li, B. Readers of histone modifications
    • Yun, M.; Wu, J.; Workman, J.L.; Li, B. Readers of histone modifications. Cell Res. 2011, 21, 564-578.
    • (2011) Cell Res , vol.21 , pp. 564-578
    • Yun, M.1    Wu, J.2    Workman, J.L.3    Li, B.4
  • 109
    • 0033519641 scopus 로고    scopus 로고
    • Structure and ligand of a histone acetyltransferase bromodomain
    • Dhalluin, C.; Carlson, J.E.; Zeng, L.; He, C.; Aggarwal, A.K.; Zhou, M.M. Structure and ligand of a histone acetyltransferase bromodomain. Nature 1999, 399, 491-496.
    • (1999) Nature , vol.399 , pp. 491-496
    • Dhalluin, C.1    Carlson, J.E.2    Zeng, L.3    He, C.4    Aggarwal, A.K.5    Zhou, M.M.6
  • 110
    • 0035937419 scopus 로고    scopus 로고
    • Histone acetyltransferase complexes stabilize swi/snf binding to promoter nucleosomes
    • Hassan, A.H.; Neely, K.E.; Workman, J.L. Histone acetyltransferase complexes stabilize swi/snf binding to promoter nucleosomes. Cell 2001, 104, 817-827.
    • (2001) Cell , vol.104 , pp. 817-827
    • Hassan, A.H.1    Neely, K.E.2    Workman, J.L.3
  • 111
    • 0036847620 scopus 로고    scopus 로고
    • Function and selectivity of bromodomains in anchoring chromatin-modifying complexes to promoter nucleosomes
    • Hassan, A.H.; Prochasson, P.; Neely, K.E.; Galasinski, S.C.; Chandy, M.; Carrozza, M.J.; Workman, J.L. Function and selectivity of bromodomains in anchoring chromatin-modifying complexes to promoter nucleosomes. Cell 2002, 111, 369-379.
    • (2002) Cell , vol.111 , pp. 369-379
    • Hassan, A.H.1    Prochasson, P.2    Neely, K.E.3    Galasinski, S.C.4    Chandy, M.5    Carrozza, M.J.6    Workman, J.L.7
  • 112
    • 77950513764 scopus 로고    scopus 로고
    • cassette of N-terminal amino acids of histone H2B are required for efficient cell survival, DNA repair and Swi/Snf binding in UV irradiated yeast
    • Nag, R.; Kyriss, M.; Smerdon, J.W.; Wyrick, J.J.; Smerdon, M.J. A cassette of N-terminal amino acids of histone H2B are required for efficient cell survival, DNA repair and Swi/Snf binding in UV irradiated yeast. Nucleic Acids Res. 2010, 38, 1450-1460.
    • (2010) Nucleic Acids Res , vol.38 , pp. 1450-1460
    • Nag, R.1    Kyriss, M.2    Smerdon, J.W.3    Wyrick, J.J.4    Smerdon, M.J.A.5
  • 113
    • 1942535223 scopus 로고    scopus 로고
    • Tandem bromodomains in the chromatin remodeler RSC recognize acetylated histone H3 Lys14
    • Kasten, M.; Szerlong, H.; Erdjument-Bromage, H.; Tempst, P.; Werner, M.; Cairns, B.R. Tandem bromodomains in the chromatin remodeler RSC recognize acetylated histone H3 Lys14. EMBO J. 2004, 23, 1348-1359.
    • (2004) EMBO J , vol.23 , pp. 1348-1359
    • Kasten, M.1    Szerlong, H.2    Erdjument-Bromage, H.3    Tempst, P.4    Werner, M.5    Cairns, B.R.6
  • 114
    • 20844453256 scopus 로고    scopus 로고
    • UV irradiation stimulates histone acetylation and chromatin remodeling at a repressed yeast locus
    • Yu, Y.; Teng, Y.; Liu, H.; Reed, S.H.; Waters, R. UV irradiation stimulates histone acetylation and chromatin remodeling at a repressed yeast locus. Proc. Natl. Acad. Sci. USA 2005, 102, 8650-8655.
    • (2005) Proc. Natl. Acad. Sci. USA , vol.102 , pp. 8650-8655
    • Yu, Y.1    Teng, Y.2    Liu, H.3    Reed, S.H.4    Waters, R.5
  • 115
    • 37849051645 scopus 로고    scopus 로고
    • Saccharomyces cerevisiae Rad16 mediates ultraviolet-dependent histone H3 acetylation required for efficient global genome nucleotide-excision repair
    • Teng, Y.; Liu, H.; Gill, H.W.; Yu, Y.; Waters, R.; Reed, S.H. Saccharomyces cerevisiae Rad16 mediates ultraviolet-dependent histone H3 acetylation required for efficient global genome nucleotide-excision repair. EMBO Rep. 2008, 9, 97-102.
    • (2008) EMBO Rep , vol.9 , pp. 97-102
    • Teng, Y.1    Liu, H.2    Gill, H.W.3    Yu, Y.4    Waters, R.5    Reed, S.H.6
  • 117
    • 0842281646 scopus 로고    scopus 로고
    • The yeast Rad7/Rad16/Abf1 complex generates superhelical torsion in DNA that is required for nucleotide excision repair
    • Yu, S.; Owen-Hughes, T.; Friedberg, E.C.; Waters, R.; Reed, S.H. The yeast Rad7/Rad16/Abf1 complex generates superhelical torsion in DNA that is required for nucleotide excision repair. DNA Repair 2004, 3, 277-287.
    • (2004) DNA Repair , vol.3 , pp. 277-287
    • Yu, S.1    Owen-Hughes, T.2    Friedberg, E.C.3    Waters, R.4    Reed, S.H.5
  • 118
    • 77951498720 scopus 로고    scopus 로고
    • A cooperative activation loop among SWI/SNF, gamma-H2AX and H3 acetylation for DNA double-strand break repair
    • Lee, H.S.; Park, J.H.; Kim, S.J.; Kwon, S.J.; Kwon, J. A cooperative activation loop among SWI/SNF, gamma-H2AX and H3 acetylation for DNA double-strand break repair. EMBO J. 2010, 29, 1434-1445.
    • (2010) EMBO J , vol.29 , pp. 1434-1445
    • Lee, H.S.1    Park, J.H.2    Kim, S.J.3    Kwon, S.J.4    Kwon, J.5
  • 119
    • 10944224673 scopus 로고    scopus 로고
    • INO80 and gamma-H2AX interaction links ATP-dependent chromatin remodeling to DNA damage repair
    • Morrison, A.J.; Highland, J.; Krogan, N.J.; Rbel-Eden, A.; Greenblatt, J.F.; Haber, J.E.; Shen, X. INO80 and gamma-H2AX interaction links ATP-dependent chromatin remodeling to DNA damage repair. Cell 2004, 119, 767-775.
    • (2004) Cell , vol.119 , pp. 767-775
    • Morrison, A.J.1    Highland, J.2    Krogan, N.J.3    Rbel-Eden, A.4    Greenblatt, J.F.5    Haber, J.E.6    Shen, X.7


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.