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铁硫簇在质体中的组装与转移

Assembly and Transfer of Iron-Sulfur Clusters in the Plastid.

作者信息

Lu Yan

机构信息

Department of Biological Sciences, Western Michigan University, Kalamazoo, MI, United States.

出版信息

Front Plant Sci. 2018 Mar 14;9:336. doi: 10.3389/fpls.2018.00336. eCollection 2018.

Abstract

Iron-Sulfur (Fe-S) clusters and proteins are essential to many growth and developmental processes. In plants, they exist in the plastids, mitochondria, cytosol, and nucleus. Six types of Fe-S clusters are found in the plastid: classic 2Fe-2S, NEET-type 2Fe-2S, Rieske-type 2Fe-2S, 3Fe-4S, 4Fe-4S, and siroheme 4Fe-4S. Classic, NEET-type, and Rieske-type 2Fe-2S clusters have the same 2Fe-2S core; similarly, common and siroheme 4Fe-4S clusters have the same 4Fe-4S core. Plastidial Fe-S clusters are assembled by the sulfur mobilization (SUF) pathway, which contains cysteine desulfurase (EC 2.8.1.7), sulfur transferase (EC 2.8.1.3), Fe-S scaffold complex, and Fe-S carrier proteins. The plastidial cysteine desulfurase-sulfur transferase-Fe-S-scaffold complex system is responsible for assembly of all plastidial Fe-S clusters. However, different types of Fe-S clusters are transferred to recipient proteins via respective Fe-S carrier proteins. This review focuses on recent discoveries on the molecular functions of different assembly and transfer factors involved in the plastidial SUF pathway. It also discusses potential points for regulation of the SUF pathway, relationships among the plastidial, mitochondrial, and cytosolic Fe-S assembly and transfer pathways, as well as several open questions about the carrier proteins for Rieske-type 2Fe-2S, NEET-type 2Fe-2S, and 3F-4S clusters.

摘要

铁硫(Fe-S)簇和蛋白质对许多生长和发育过程至关重要。在植物中,它们存在于质体、线粒体、细胞质和细胞核中。在质体中发现了六种类型的Fe-S簇:经典的2Fe-2S、NEET型2Fe-2S、 Rieske型2Fe-2S、3Fe-4S、4Fe-4S和亚硫酸血红素4Fe-4S。经典型、NEET型和Rieske型2Fe-2S簇具有相同的2Fe-2S核心;同样,普通型和亚硫酸血红素4Fe-4S簇具有相同的4Fe-4S核心。质体中的Fe-S簇由硫动员(SUF)途径组装,该途径包含半胱氨酸脱硫酶(EC 2.8.1.7)、硫转移酶(EC 2.8.1.3)、Fe-S支架复合物和Fe-S载体蛋白。质体半胱氨酸脱硫酶-硫转移酶-Fe-S支架复合物系统负责所有质体Fe-S簇的组装。然而,不同类型的Fe-S簇通过各自的Fe-S载体蛋白转移到受体蛋白上。本综述重点关注质体SUF途径中不同组装和转移因子分子功能的最新发现。它还讨论了SUF途径的潜在调控点、质体、线粒体和细胞质Fe-S组装与转移途径之间的关系,以及关于Rieske型2Fe-2S、NEET型2Fe-2S和3F-4S簇载体蛋白的几个未解决问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecb8/5890173/2a312577624f/fpls-09-00336-g0001.jpg

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