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真核生物中铁硫簇生物合成的起源

On the Origin of Iron/Sulfur Cluster Biosynthesis in Eukaryotes.

作者信息

Tsaousis Anastasios D

机构信息

Laboratory of Molecular and Evolutionary Parasitology, ResistAnce Pathogenicity and Infectious Diseases (RAPID) Group, School of Biosciences, University of Kent, Canterbury, United Kingdom.

出版信息

Front Microbiol. 2019 Nov 8;10:2478. doi: 10.3389/fmicb.2019.02478. eCollection 2019.

Abstract

Iron and sulfur are indispensable elements of every living cell, but on their own these elements are toxic and require dedicated machineries for the formation of iron/sulfur (Fe/S) clusters. In eukaryotes, proteins requiring Fe/S clusters (Fe/S proteins) are found in or associated with various organelles including the mitochondrion, endoplasmic reticulum, cytosol, and the nucleus. These proteins are involved in several pathways indispensable for the viability of each living cell including DNA maintenance, protein translation and metabolic pathways. Thus, the formation of Fe/S clusters and their delivery to these proteins has a fundamental role in the functions and the evolution of the eukaryotic cell. Currently, most eukaryotes harbor two (located in cytosol and mitochondrion) or three (located in plastid) machineries for the assembly of Fe/S clusters, but certain anaerobic microbial eukaryotes contain sulfur mobilization (SUF) machineries that were previously thought to be present only in archaeal linages. These machineries could not only stipulate which pathway was present in the last eukaryotic common ancestor (LECA), but they could also provide clues regarding presence of an Fe/S cluster machinery in the proto-eukaryote and evolution of Fe/S cluster assembly machineries in all eukaryotes.

摘要

铁和硫是每个活细胞不可或缺的元素,但这些元素本身具有毒性,需要专门的机制来形成铁硫(Fe/S)簇。在真核生物中,需要Fe/S簇的蛋白质(Fe/S蛋白)存在于包括线粒体、内质网、细胞质和细胞核在内的各种细胞器中或与之相关。这些蛋白质参与了每个活细胞生存所必需的几种途径,包括DNA维持、蛋白质翻译和代谢途径。因此,Fe/S簇的形成及其向这些蛋白质的传递在真核细胞的功能和进化中具有重要作用。目前,大多数真核生物拥有两种(位于细胞质和线粒体中)或三种(位于质体中)用于组装Fe/S簇的机制,但某些厌氧微生物真核生物含有硫动员(SUF)机制,这些机制以前被认为只存在于古菌谱系中。这些机制不仅可以确定最后一个真核生物共同祖先(LECA)中存在哪些途径,还可以提供有关原始真核生物中Fe/S簇机制的存在以及所有真核生物中Fe/S簇组装机制进化的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef60/6857552/8023e08e7b01/fmicb-10-02478-g001.jpg

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