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APTX 切口 DNA 感应及在神经退行性疾病中的多效失活机制。

Mechanism of APTX nicked DNA sensing and pleiotropic inactivation in neurodegenerative disease.

机构信息

Genome Integrity and Structural Biology Laboratory, Department of Health and Human Services, National Institute of Environmental Health Sciences, US National Institutes of Health, Research Triangle Park, NC, USA.

Drug Discovery Group Cancer Research UK Manchester Institute, Manchester, UK.

出版信息

EMBO J. 2018 Jul 13;37(14). doi: 10.15252/embj.201798875. Epub 2018 Jun 22.

Abstract

The failure of DNA ligases to complete their catalytic reactions generates cytotoxic adenylated DNA strand breaks. The APTX RNA-DNA deadenylase protects genome integrity and corrects abortive DNA ligation arising during ribonucleotide excision repair and base excision DNA repair, and human mutations cause the neurodegenerative disorder ataxia with oculomotor ataxia 1 (AOA1). How APTX senses cognate DNA nicks and is inactivated in AOA1 remains incompletely defined. Here, we report X-ray structures of APTX engaging nicked RNA-DNA substrates that provide direct evidence for a wedge-pivot-cut strategy for 5'-AMP resolution shared with the alternate 5'-AMP processing enzymes POLβ and FEN1. Our results uncover a DNA-induced fit mechanism regulating APTX active site loop conformations and assembly of a catalytically competent active center. Further, based on comprehensive biochemical, X-ray and solution NMR results, we define a complex hierarchy for the differential impacts of the AOA1 mutational spectrum on APTX structure and activity. Sixteen AOA1 variants impact APTX protein stability, one mutation directly alters deadenylation reaction chemistry, and a dominant AOA1 variant unexpectedly allosterically modulates APTX active site conformations.

摘要

DNA 连接酶未能完成其催化反应会产生细胞毒性的腺嘌呤化 DNA 链断裂。APTX RNA-DNA 脱腺苷酶可保护基因组完整性并纠正核苷酸切除修复和碱基切除修复过程中出现的无效 DNA 连接,而人类突变会导致神经退行性疾病眼动共济失调伴视神经萎缩 1 型(AOA1)。APTX 如何感知同源 DNA 缺口以及在 AOA1 中失活仍不完全清楚。在这里,我们报告了 APTX 与缺口 RNA-DNA 底物结合的 X 射线结构,为与替代 5'-AMP 加工酶 POLβ 和 FEN1 共享的 5'-AMP 分辨率楔形枢轴切割策略提供了直接证据。我们的结果揭示了一种 DNA 诱导的适配机制,调节 APTX 活性位点环构象和催化活性中心的组装。此外,基于全面的生化、X 射线和溶液 NMR 结果,我们定义了 AOA1 突变谱对 APTX 结构和活性的差异影响的复杂层次结构。十六种 AOA1 变体影响 APTX 蛋白稳定性,一种突变直接改变脱腺苷化反应化学,而一种显性 AOA1 变体出乎意料地变构调节 APTX 活性位点构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff34/6043908/7ee2820fd140/EMBJ-37-e98875-g002.jpg

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