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Influence of electrochemical properties in determining the sensitivity of 4Fe-4S clusters in proteins to oxidative damage.

机译:电化学性质对确定蛋白质中4Fe-4S簇对氧化损伤的敏感性的影响。

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摘要

Interconversion between [4Fe-4S] cubane and [3Fe-4S] cuboidal states represents one of the simplest structural changes an iron-sulphur cluster can undertake. This reaction is implicated in oxidative damage and in modulation of the activity and regulation of certain enzymes, and it is therefore important to understand the factors governing cluster stability and the processes that activate cluster conversion. In the present study, protein film voltammetry has been used to induce and monitor the oxidative conversion of [4Fe-4S] into [3Fe-4S] clusters in different variants of Azotobacter vinelandii ferredoxin I (AvFdI; the 8Fe form of the native protein), and DeltaThr(14)/DeltaAsp(15), Thr(14)-->Cys (T14C) and C42D mutants. The electrochemical results have been correlated with the differing oxygen sensitivities of [4Fe-4S] clusters, and comparisons have been drawn with other ferredoxins (Desulfovibrio africanus FdIII, Clostridium pasteurianum Fd, Thauera aromatica Fd and Pyrococcus furiosus Fd). In contrast with high-potential iron-sulphur proteins (HiPIPs) for which the oxidized species [4Fe-4S](3+) is inert to degradation and can be isolated, the hypervalent state in these ferredoxins (most obviously the 3+ level) is very labile, and the reduction potential at which this is formed is a key factor in determining the cluster's resistance to oxidative damage.
机译:[4Fe-4S]古巴与[3Fe-4S]长方体之间的相互转化代表铁-硫团簇可以进行的最简单的结构变化之一。该反应涉及氧化损伤以及某些酶的活性和调节的调节,因此重要的是了解控制簇稳定性的因素和激活簇转化的过程。在本研究中,蛋白质膜伏安法已用于诱导和监测在不同的固氮铁氧还蛋白I(AvFdI;天然蛋白质的8Fe形式)的不同变体中[4Fe-4S]到[3Fe-4S]簇的氧化转化。 ,以及DeltaThr(14)/ DeltaAsp(15),Thr(14)-> Cys(T14C)和C42D突变体。电化学结果与[4Fe-4S]团簇的不同氧敏感性相关,并与其他铁氧还蛋白(非洲脱硫弧菌FdIII,巴氏梭状芽胞杆菌Fd,芳族梭菌Fd和激烈火球菌Fd)进行了比较。与氧化型[4Fe-4S](3+)对降解呈惰性并可以分离的高潜力铁硫蛋白(HiPIPs)相比,这些铁氧还蛋白的高价态(最明显的是3+水平)镍非常不稳定,形成这种氧化物的还原电位是决定簇抗氧化损伤的关键因素。

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