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Iron-sulfur cluster biosynthesis.

机译:铁硫簇生物合成。

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摘要

Iron-sulfur (Fe-S) clusters are present in more than 200 different types of enzymes or proteins and constitute one of the most ancient, ubiquitous and structurally diverse classes of biological prosthetic groups. Hence the process of Fe-S cluster biosynthesis is essential to almost all forms of life and is remarkably conserved in prokaryotic and eukaryotic organisms. Three distinct types of Fe-S cluster assembly machinery have been established in bacteria, termed the NIF, ISC and SUF systems, and, in each case, the overall mechanism involves cysteine desulfurase-mediated assembly of transient clusters on scaffold proteins and subsequent transfer of pre-formed clusters to apo proteins. A molecular level understanding of the complex processes of Fe-S cluster assembly and transfer is now beginning to emerge from the combination of in vivo and in vitro approaches. The present review highlights recent developments in understanding the mechanism of Fe-S cluster assembly and transfer involving the ubiquitous U-type scaffold proteins and the potential roles of accessory proteins such as Nfu proteins and monothiol glutaredoxins in the assembly, storage or transfer of Fe-S clusters.
机译:铁硫(FE-S)簇存在于200多种不同类型的酶或蛋白质中,构成了最古老,普遍和结构上多样化的生物假体群中的一种。因此,Fe-S簇生物合成的过程对于几乎所有形式的生命都是必不可少的,在原核和真核生物中非常保守。在细菌中建立了三种不同类型的Fe-S簇组装机械,称为NIF,ISC和SUF系统,在每种情况下,总体机制涉及半胱氨酸脱硫酶介导的瞬态簇在脚手架蛋白上的瞬态簇和随后的转移预先形成的簇为Apo蛋白。现在,从体内和体外方法的组合开始出现了对Fe-S簇组装和转移的复杂过程的分子水平的理解。本评论重点介绍了了解Fe-S簇组装机制和转移的最新发展,以及涉及无处不在的U型支架蛋白以及辅助蛋白的潜在作用,例如NFU蛋白和单硫醇谷氨酸在组装,储存或转移Fe- fe-蛋白质中S簇。

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