DNA-protein Interactions Unit, School of Biochemistry, University of Bristol, Bristol BS8 1TD, UK.
Nucleic Acids Res. 2020 Feb 28;48(4):1872-1885. doi: 10.1093/nar/gkz1146.
Efficient double-strand break repair in eukaryotes requires manipulation of chromatin structure. ATP-dependent chromatin remodelling enzymes facilitate different DNA repair pathways, during different stages of the cell cycle and in varied chromatin environments. The contribution of remodelling factors to double-strand break repair within heterochromatin during G2 is unclear. The human HELLS protein is a Snf2-like chromatin remodeller family member and is mutated or misregulated in several cancers and some cases of ICF syndrome. HELLS has been implicated in the DNA damage response, but its mechanistic function in repair is not well understood. We discover that HELLS facilitates homologous recombination at two-ended breaks and contributes to repair within heterochromatic regions during G2. HELLS promotes initiation of HR by facilitating end-resection and accumulation of CtIP at IR-induced foci. We identify an interaction between HELLS and CtIP and establish that the ATPase domain of HELLS is required to promote DSB repair. This function of HELLS in maintenance of genome stability is likely to contribute to its role in cancer biology and demonstrates that different chromatin remodelling activities are required for efficient repair in specific genomic contexts.
真核生物中双链断裂的有效修复需要对染色质结构进行操作。ATP 依赖性染色质重塑酶在细胞周期的不同阶段和不同的染色质环境中促进不同的 DNA 修复途径。重塑因子在 G2 期异染色质中双链断裂修复中的贡献尚不清楚。人 HELIS 蛋白是 Snf2 样染色质重塑酶家族成员,在几种癌症和一些 ICF 综合征病例中发生突变或失调。HELLS 已被牵涉到 DNA 损伤反应中,但它在修复中的机制功能尚不清楚。我们发现 HELIS 促进了两端断裂的同源重组,并有助于 G2 期异染色质区域的修复。HELLS 通过促进末端切除和 CtIP 在 IR 诱导的焦点处积累来促进 HR 的起始。我们确定了 HELIS 和 CtIP 之间的相互作用,并证实 HELIS 的 ATP 酶结构域有助于促进 DSB 修复。HELLS 在维持基因组稳定性方面的这种功能可能与其在癌症生物学中的作用有关,并表明在特定基因组环境中需要不同的染色质重塑活性来实现有效的修复。