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首页> 外文期刊>Journal of Structural Biology >Specific recognition of phosphorylated tail of H2AX by the tandem BRCT domains of MCPH1 revealed by complex structure
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Specific recognition of phosphorylated tail of H2AX by the tandem BRCT domains of MCPH1 revealed by complex structure

机译:复杂结构揭示了MCPH1的串联BRCT结构域对H2AX磷酸化尾巴的特异性识别

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摘要

MCPH1 is especially important for linking chromatin remodeling to DNA damage response. It contains three BRCT (BRCA1-carboxyl terminal) domains. The N-terminal region directly binds with chromatin remodeling complex SWI-SNF, and the C-terminal BRCT2-BRCT3 domains (tandem BRCT domains) are involved in cellular DNA damage response. The MCPH1 gene associates with evolution of brain size, and its variation can cause primary microcephaly. In this study we solve the crystal structures of MCPH1 natural variant (A761) C-terminal tandem BRCT domains alone as well as in complex with gamma H2AX tail. Compared with other structures of tandem BRCT domains, the most significant differences lie in phosphopeptide binding pocket. Additionally, fluorescence polarization assays demonstrate that MCPH1 tandem BRCT domains show a binding selectivity on pSer +3 and prefer to bind phosphopeptide with free COOH-terminus. Taken together, our research provides new structural insights into BRCT-phosphopeptide recognition mechanism
机译:MCPH1对于将染色质重塑与DNA损伤反应联系起来尤其重要。它包含三个BRCT(BRCA1-羧基末端)域。 N末端区域直接与染色质重塑复合体SWI-SNF结合,而C末端BRCT2-BRCT3结构域(串联BRCT结构域)参与细胞DNA损伤反应。 MCPH1基因与大脑大小的演变有关,其变异可引起原发性小头畸形。在这项研究中,我们解决了单独的MCPH1自然变异(A761)C端串联BRCT域以及与gamma H2AX尾部复合的晶体结构。与串联BRCT结构域的其他结构相比,最显着的差异在于磷酸肽结合口袋。此外,荧光偏振分析表明,MCPH1串联BRCT结构域对pSer +3表现出结合选择性,并且更倾向于将磷酸肽与游离COOH末端结合。综上所述,我们的研究为BRCT-磷酸肽识别机制提供了新的结构见解。

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