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GCN5 and E2F1 stimulate nucleotide excision repair by promoting H3K9 acetylation at sites of damage

机译:GCN5和E2F1通过促进损伤部位的H3K9乙酰化来刺激核苷酸切除修复

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摘要

Chromatin structure is known to be a barrier to DNA repair and a large number of studies have now identified various factors that modify histones and remodel nucleosomes to facilitate repair. In response to ultraviolet (UV) radiation several histones are acetylated and this enhances the repair of DNA photoproducts by the nucleotide excision repair (NER) pathway. However, the molecular mechanism by which UV radiation induces histone acetylation to allow for efficient NER is not completely understood. We recently discovered that the E2F1 transcription factor accumulates at sites of UV-induced DNA damage and directly stimulates NER through a non-transcriptional mechanism. Here we demonstrate that E2F1 associates with the GCN5 acetyltransferase in response to UV radiation and recruits GCN5 to sites of damage. UV radiation induces the acetylation of histone H3 lysine 9 (H3K9) and this requires both GCN5 and E2F1. Moreover, as previously observed for E2F1, knock down of GCN5 results in impaired recruitment of NER factors to sites of damage and inefficient DNA repair. These findings demonstrate a direct role for GCN5 and E2F1 in NER involving H3K9 acetylation and increased accessibility to the NER machinery.
机译:已知染色质结构是DNA修复的障碍,并且大量研究现已鉴定出修饰组蛋白和重塑核小体以促进修复的各种因素。响应紫外线(UV)辐射,一些组蛋白被乙酰化,这通过核苷酸切除修复(NER)途径增强了DNA光产物的修复。但是,UV辐射诱导组蛋白乙酰化以实现有效NER的分子机制尚未完全了解。我们最近发现,E2F1转录因子在UV诱导的DNA损伤部位蓄积,并通过非转录机制直接刺激NER。在这里,我们证明E2F1与GCN5乙酰基转移酶相关联以响应紫外线辐射,并将GCN5募集到受损部位。紫外线辐射诱导组蛋白H3赖氨酸9(H3K9)的乙酰化,这需要GCN5和E2F1。此外,如先前对E2F1所观察到的,GCN5的敲低导致NER因子募集到受损位点和DNA修复效率低下。这些发现证明了GCN5和E2F1在NER中的直接作用,涉及H3K9乙酰化并增加了NER机制的可及性。

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