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Poly(ADP-ribose)-dependent Chromatin Unfolding Facilitates the Association of DNA-binding Proteins with DNA at Sites of Damage

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Specialty Biochemistry
Date 2019 Oct 1
PMID 31566235
Citations 33
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Abstract

The addition of poly(ADP-ribose) (PAR) chains along the chromatin fiber due to PARP1 activity regulates the recruitment of multiple factors to sites of DNA damage. In this manuscript, we investigated how, besides direct binding to PAR, early chromatin unfolding events controlled by PAR signaling contribute to recruitment to DNA lesions. We observed that different DNA-binding, but not histone-binding, domains accumulate at damaged chromatin in a PAR-dependent manner, and that this recruitment correlates with their affinity for DNA. Our findings indicate that this recruitment is promoted by early PAR-dependent chromatin remodeling rather than direct interaction with PAR. Moreover, recruitment is not the consequence of reduced molecular crowding at unfolded damaged chromatin but instead originates from facilitated binding to more exposed DNA. These findings are further substantiated by the observation that PAR-dependent chromatin remodeling at DNA lesions underlies increased DNAse hypersensitivity. Finally, the relevance of this new mode of PAR-dependent recruitment to DNA lesions is demonstrated by the observation that reducing the affinity for DNA of both CHD4 and HP1α, two proteins shown to be involved in the DNA-damage response, strongly impairs their recruitment to DNA lesions.

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References
1.
Lehmann L, Hewitt G, Aibara S, Leitner A, Marklund E, Maslen S . Mechanistic Insights into Autoinhibition of the Oncogenic Chromatin Remodeler ALC1. Mol Cell. 2017; 68(5):847-859.e7. PMC: 5745148. DOI: 10.1016/j.molcel.2017.10.017. View

2.
Ayrapetov M, Gursoy-Yuzugullu O, Xu C, Xu Y, Price B . DNA double-strand breaks promote methylation of histone H3 on lysine 9 and transient formation of repressive chromatin. Proc Natl Acad Sci U S A. 2014; 111(25):9169-74. PMC: 4078803. DOI: 10.1073/pnas.1403565111. View

3.
Khurana S, Kruhlak M, Kim J, Tran A, Liu J, Nyswaner K . A macrohistone variant links dynamic chromatin compaction to BRCA1-dependent genome maintenance. Cell Rep. 2014; 8(4):1049-62. PMC: 4154351. DOI: 10.1016/j.celrep.2014.07.024. View

4.
Ogiwara H, Ui A, Otsuka A, Satoh H, Yokomi I, Nakajima S . Histone acetylation by CBP and p300 at double-strand break sites facilitates SWI/SNF chromatin remodeling and the recruitment of non-homologous end joining factors. Oncogene. 2011; 30(18):2135-46. DOI: 10.1038/onc.2010.592. View

5.
Schaufele F, Enwright 3rd J, Wang X, Teoh C, Srihari R, Erickson R . CCAAT/enhancer binding protein alpha assembles essential cooperating factors in common subnuclear domains. Mol Endocrinol. 2001; 15(10):1665-76. DOI: 10.1210/mend.15.10.0716. View