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肌醇六磷酸通过稳定 Ku-XLF 相互作用刺激 NHEJ 的结构和功能基础。

Structural and functional basis of inositol hexaphosphate stimulation of NHEJ through stabilization of Ku-XLF interaction.

机构信息

Heartand Lung Research Institute, University of Cambridge, Biomedical Campus, Papworth Road, Trumpington, Cambridge CB2 0BB, UK.

Institute for Integrative Biology of the Cell (I2BC), Institute Joliot, CEA, CNRS, Univ.Paris-Sud, Université Paris-Saclay, 91198, Gif-sur-Yvette cedex, France.

出版信息

Nucleic Acids Res. 2023 Nov 27;51(21):11732-11747. doi: 10.1093/nar/gkad863.

Abstract

The classical Non-Homologous End Joining (c-NHEJ) pathway is the predominant process in mammals for repairing endogenous, accidental or programmed DNA Double-Strand Breaks. c-NHEJ is regulated by several accessory factors, post-translational modifications, endogenous chemical agents and metabolites. The metabolite inositol-hexaphosphate (IP6) stimulates c-NHEJ by interacting with the Ku70-Ku80 heterodimer (Ku). We report cryo-EM structures of apo- and DNA-bound Ku in complex with IP6, at 3.5 Å and 2.74 Å resolutions respectively, and an X-ray crystallography structure of a Ku in complex with DNA and IP6 at 3.7 Å. The Ku-IP6 interaction is mediated predominantly via salt bridges at the interface of the Ku70 and Ku80 subunits. This interaction is distant from the DNA, DNA-PKcs, APLF and PAXX binding sites and in close proximity to XLF binding site. Biophysical experiments show that IP6 binding increases the thermal stability of Ku by 2°C in a DNA-dependent manner, stabilizes Ku on DNA and enhances XLF affinity for Ku. In cells, selected mutagenesis of the IP6 binding pocket reduces both Ku accrual at damaged sites and XLF enrolment in the NHEJ complex, which translate into a lower end-joining efficiency. Thus, this study defines the molecular bases of the IP6 metabolite stimulatory effect on the c-NHEJ repair activity.

摘要

经典的非同源末端连接(c-NHEJ)途径是哺乳动物修复内源性、意外或程序性 DNA 双链断裂的主要过程。c-NHEJ 受几种辅助因子、翻译后修饰、内源性化学物质和代谢物调节。代谢物肌醇六磷酸(IP6)通过与 Ku70-Ku80 异二聚体(Ku)相互作用刺激 c-NHEJ。我们报告了apo 和 DNA 结合的 Ku 与 IP6 复合物的 cryo-EM 结构,分辨率分别为 3.5 Å 和 2.74 Å,以及 Ku 与 DNA 和 IP6 复合物的 X 射线晶体学结构,分辨率为 3.7 Å。Ku-IP6 相互作用主要通过 Ku70 和 Ku80 亚基界面上的盐桥介导。这种相互作用远离 DNA、DNA-PKcs、APLF 和 PAXX 结合位点,并且与 XLF 结合位点接近。生物物理实验表明,IP6 结合以 DNA 依赖的方式将 Ku 的热稳定性提高了 2°C,稳定了 Ku 在 DNA 上的结合并增强了 XLF 对 Ku 的亲和力。在细胞中,对 IP6 结合口袋的选择性诱变减少了受损部位 Ku 的积累和 NHEJ 复合物中 XLF 的招募,这转化为较低的末端连接效率。因此,本研究定义了 IP6 代谢物对 c-NHEJ 修复活性的刺激作用的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3850/10682503/8b5c729fa47d/gkad863figgra1.jpg

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