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The structure of ends determines the pathway choice and Mre11 nuclease dependency of DNA double-strand break repair

机译:末端的结构决定DNA双链断裂修复的途径选择和Mre11核酸酶依赖性

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The key event in the choice of repair pathways for DNA double-strand breaks (DSBs) is the initial processing of ends. Non-homologous end joining (NHEJ) involves limited processing, but homology-dependent repair (HDR) requires extensive resection of the 5' strand. How cells decide if an end is channeled to resection or NHEJ is not well understood. We hypothesize that the structure of ends is a major determinant and tested this hypothesis with model DNA substrates in Xenopus egg extracts. While ends with normal nucleotides are efficiently channeled to NHEJ, ends with damaged nucleotides or bulky adducts are channeled to resection. Resection is dependent on Mre11, but its nuclease activity is critical only for ends with 5' bulky adducts. CtIP is absolutely required for activating the nuclease-dependent mechanism of Mre11 but not the nuclease-independent mechanism. Together, these findings suggest that the structure of ends is a major determinant for the pathway choice of DSB repair and the Mre11 nuclease dependency of resection.
机译:选择DNA双链断裂(DSB)修复途径的关键事件是末端的初始加工。非同源末端连接(NHEJ)涉及有限的加工过程,但同源性依赖修复(HDR)需要广泛切除5'链。细胞如何决定末端是否被引导至切除或NHEJ尚不清楚。我们假设末端的结构是主要的决定因素,并用非洲爪蟾卵提取物中的模型DNA底物验证了这一假设。将具有正常核苷酸的末端有效地引导至NHEJ,而将具有受损核苷酸或庞大的加合物的末端引导进行切除。切除依赖于Mre11,但其核酸酶活性仅对带有5'大加合物的末端至关重要。激活Mre11的核酸酶依赖性机制绝对需要CtIP,而不是核酸酶非依赖性机制。在一起,这些发现表明末端的结构是决定DSB修复途径和切除Mre11核酸酶依赖性的主要决定因素。

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