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CHD7 and 53BP1 regulate distinct pathways for the re-ligation of DNA double-strand breaks

机译:CHD7和53BP1调节DNA双链断裂的不同途径

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Chromatin structure is dynamically reorganized at multiple levels in response to DNA double-strand breaks (DSBs). Yet, how the different steps of chromatin reorganization are coordinated in space and time to differentially regulate DNA repair pathways is insufficiently understood. Here, we identify the Chromodomain Helicase DNA Binding Protein 7 (CHD7), which is frequently mutated in CHARGE syndrome, as an integral component of the non-homologous end-joining (NHEJ) DSB repair pathway. Upon recruitment via PARP1-triggered chromatin remodeling, CHD7 stimulates further chromatin relaxation around DNA break sites and brings in HDAC1/2 for localized chromatin de-acetylation. This counteracts the CHD7-induced chromatin expansion, thereby ensuring temporally and spatially controlled ‘chromatin breathing’ upon DNA damage, which we demonstrate fosters efficient and accurate DSB repair by controlling Ku and LIG4/XRCC4 activities. Loss of CHD7-HDAC1/2-dependent cNHEJ reinforces 53BP1 assembly at the damaged chromatin and shifts DSB repair to mutagenic NHEJ, revealing a backup function of 53BP1 when cNHEJ fails. Chromatin is dynamically remodeled in response to DNA damage in favour of repair. Here the authors reveal how the chromatin remodeler CHD7 and chromatin binding protein 53BP1 regulate distinct DNA repair pathways.
机译:染色质结构响应于DNA双链(DSB),在多个水平下动态重新组织。然而,染色质重组的不同步骤在空间和时间内是如何协调的,以差异调节DNA修复途径不充分理解。在此,我们鉴定染色体螺旋酶DNA结合蛋白7(CHD7),其经常突变为电荷综合征,作为非同源终连接(NHEJ)DSB修复途径的一体组分。通过PARP1触发的染色质重塑募集,CHD7刺激DNA断裂位点周围的进一步染色质弛豫,并在HDAC1 / 2中带来局部染色质脱乙酰化。这抵消了CHD7诱导的染色质膨胀,从而确保了在DNA损伤时暂时和空间呼吸的“染色蛋白呼吸”,我们通过控制KU和Lig4 / XRCC4活性来展示促进高效和准确的DSB修复。 CHD7-HDAC1 / 2依赖性CNHEJ的损失在受损的染色质中加强了53bp1组件,将DSB修复转移到诱变NHEJ,揭示CNHEJ失败时53bp1的备用功能。染色质因响应于DNA损伤而动态改造,有利于修复。在这里,作者揭示了染色质重塑剂CHD7和染色质结合蛋白53bp1如何调节不同的DNA修复途径。

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