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铁硫簇 A 型装配蛋白的进化历史揭示了多个基因复制事件和必需的蛋白质模体。

The Evolution History of Fe-S Cluster A-Type Assembly Protein Reveals Multiple Gene Duplication Events and Essential Protein Motifs.

机构信息

School of Life Sciences, Key Laboratory for Space Bioscience and Biotechnology, Northwestern Polytechnical University, Xi'an, Shaanxi, PR China.

College of Life Sciences, Shaanxi Normal University, Xi'an, Shaanxi, PR China.

出版信息

Genome Biol Evol. 2020 Mar 1;12(3):160-173. doi: 10.1093/gbe/evaa038.

Abstract

Iron-sulfur (Fe-S) clusters play important roles in electron transfer, metabolic and biosynthetic reactions, and the regulation of gene expression. Understanding the biogenesis of Fe-S clusters is therefore relevant to many fields. In the complex process of Fe-S protein formation, the A-type assembly protein (ATAP) family, which consists of several subfamilies, plays an essential role in Fe-S cluster formation and transfer and is highly conserved across the tree of life. However, the taxonomic distribution, motif compositions, and the evolutionary history of the ATAP subfamilies are not well understood. To address these problems, our study investigated the taxonomic distribution of 321 species from a broad cross-section of taxa. Then, we identified common and specific motifs in multiple ATAP subfamilies to explain the functional conservation and nonredundancy of the ATAPs, and a novel, essential motif was found in Eumetazoa IscA1, which has a newly found magnetic function. Finally, we used phylogenetic analytical methods to reconstruct the evolution history of this family. Our results show that two types of ErpA proteins (nonproteobacteria-type ErpA1 and proteobacteria-type ErpA2) exist in bacteria. The ATAP family, consisting of seven subfamilies, can be further classified into two types of ATAPs. Type-I ATAPs include IscA, SufA, HesB, ErpA1, and IscA1, with an ErpA1-like gene as their last common ancestor, whereas type-II ATAPs consist of ErpA2 and IscA2, duplicated from an ErpA2-like gene. During the mitochondrial endosymbiosis, IscA became IscA1 in eukaryotes and ErpA2 became IscA2 in eukaryotes, respectively.

摘要

铁硫 (Fe-S) 簇在电子转移、代谢和生物合成反应以及基因表达调控中发挥着重要作用。因此,了解 Fe-S 簇的生物发生与许多领域都有关联。在 Fe-S 蛋白形成的复杂过程中,由几个亚家族组成的 A 型组装蛋白 (ATAP) 家族在 Fe-S 簇的形成和转移中起着至关重要的作用,并且在整个生命之树上高度保守。然而,ATAP 亚家族的分类分布、基序组成和进化历史尚不清楚。为了解决这些问题,我们的研究调查了来自广泛分类群的 321 个物种的分类分布。然后,我们确定了多个 ATAP 亚家族中的共同和特定基序,以解释 ATAP 的功能保守性和非冗余性,并在真后生动物 IscA1 中发现了一个新的、必需的基序,该基序具有新发现的磁性功能。最后,我们使用系统发育分析方法重建了该家族的进化历史。我们的研究结果表明,两种类型的 ErpA 蛋白(非变形菌型 ErpA1 和变形菌型 ErpA2)存在于细菌中。ATAP 家族由七个亚家族组成,可进一步分为两种类型的 ATAP。I 型 ATAP 包括 IscA、SufA、HesB、ErpA1 和 IscA1,它们的最后一个共同祖先为 ErpA1 样基因,而 II 型 ATAP 由 ErpA2 和 IscA2 组成,它们分别由 ErpA2 样基因复制而来。在线粒体内共生过程中,IscA 在真核生物中变成了 IscA1,而 ErpA2 在真核生物中变成了 IscA2。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/074b/7144353/ec0eced236f1/evaa038f1.jpg

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