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Fe-S Clusters and MutY Base Excision Repair Glycosylases: Purification Kinetics and DNA Affinity Measurements

机译:Fe-S簇和MutY碱基切除修复糖基化酶:纯化动力学和DNA亲和力测量。

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摘要

A growing number of iron-sulfur (Fe-S) cluster cofactors have been identified in DNA repair proteins. MutY and its homologs are base excision repair (BER) glycosylases that prevent mutations associated with the common oxidation product of guanine (G), 8-oxo-7,8-dihydroguanine (OG) by catalyzing adenine (A) base excision from inappropriately formed OG:A mispairs. The finding of an [4Fe-4S]2+ cluster cofactor in MutY, Endonuclease III and structurally similar BER enzymes was surprising and initially thought to represent an example of a purely structural role for the cofactor. However, in the two decades subsequent to the initial discovery, purification and in vitro analysis of bacterial MutYs and mammalian homologs such as human MUTYH and mouse Mutyh, have demonstrated that proper Fe-S cluster coordination is required for OG:A substrate recognition and adenine excision. In addition, the Fe-S cluster in MutY has been shown to be capable of redox chemistry in the presence of DNA. The work in our laboratory aimed at addressing the importance of the MutY Fe-S cluster has involved a battery of approaches, with the overarching hypothesis that understanding the role(s) of the Fe-S cluster is intimately associated with understanding the biological and chemical properties of MutY and its unique damaged DNA substrate as a whole. In this chapter, we focus on methods of enzyme expression and purification, detailed enzyme kinetics, and DNA affinity assays. The methods described herein have not only been leveraged to provide insight into the roles of the MutY Fe-S cluster, but have also been provided crucial information needed to delineate the impact of inherited variants of the human homolog MUTYH associated with a colorectal cancer syndrome known as MUTYH Associated Polyposis, or MAP. Notably, many MAP associated variants have been found adjacent to the Fe-S cluster further underscoring the intimate relationship between the cofactor, MUTYH mediated DNA repair and disease.
机译:在DNA修复蛋白中发现了越来越多的铁硫(Fe-S)簇辅助因子。 MutY及其同源物是碱基切除修复(BER)糖基化酶,可通过催化腺嘌呤(A)碱基切除的不适当形成来阻止与鸟嘌呤(G),8-氧代-7,8-二氢鸟嘌呤(OG)的常见氧化产物相关的突变。 OG:出了问题。在MutY,核酸内切酶III和结构相似的BER酶中发现[4Fe-4S] 2 + 簇辅因子是令人惊讶的,最初被认为代表了辅因子纯结构作用的一个例子。但是,在最初发现之后的二十年中,细菌MutY和哺乳动物同源物(例如人MUTYH和小鼠Mutyh)的纯化和体外分析表明,OG需要适当的Fe-S簇配位:底物识别和腺嘌呤切除。此外,MutY中的Fe-S团簇已显示在存在DNA的情况下能够进行氧化还原化学反应。我们实验室旨在解决MutY Fe-S团簇的重要性的工作涉及一系列方法,其总体假设是,了解Fe-S团簇的作用与理解生物学和化学联系紧密。 MutY的特性及其整体受损的DNA底物。在本章中,我们重点介绍酶的表达和纯化方法,详细的酶动力学和DNA亲和力测定。本文描述的方法不仅被利用来提供对MutY Fe-S簇的作用的洞察力,而且还提供了描述与人类已知的结直肠癌综合症相关的人类同系物MUTYH的变异体的影响所需的关键信息。作为MUTYH相关性息肉病(MAP)。值得注意的是,在Fe-S簇附近发现了许多与MAP相关的变体,进一步强调了辅因子,MUTYH介导的DNA修复与疾病之间的密切关系。

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