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铁硫蛋白组装在人类细胞中。

Iron-Sulfur Protein Assembly in Human Cells.

机构信息

Department of Biochemistry, Indian Institute of Science, C V Raman Avenue, Bengaluru, 560012, Karnataka, India.

出版信息

Rev Physiol Biochem Pharmacol. 2018;174:25-65. doi: 10.1007/112_2017_5.

DOI:10.1007/112_2017_5
PMID:28828516
Abstract

Iron-sulfur (Fe-S) clusters serve as a fundamental inorganic constituent of living cells ranging from bacteria to human. The importance of Fe-S clusters is underscored by their requirement as a co-factor for the functioning of different enzymes and proteins. The biogenesis of Fe-S cluster is a highly coordinated process which requires specialized cellular machinery. Presently, understanding of Fe-S cluster biogenesis in human draws meticulous attention since defects in the biogenesis process result in development of multiple diseases with unresolved solutions. Mitochondrion is the major cellular compartment of Fe-S cluster biogenesis, although cytosolic biogenesis machinery has been reported in eukaryotes, including in human. The core biogenesis pathway comprises two steps. The process initiates with the assembly of Fe-S cluster on a platform scaffold protein in the presence of iron and sulfur donor proteins. Subsequent process is the transfer and maturation of the cluster to a bonafide target protein. Human Fe-S cluster biogenesis machinery comprises the mitochondrial iron-sulfur cluster (ISC) assembly and export system along with the cytosolic Fe-S cluster assembly (CIA) machinery. Impairment in the Fe-S cluster machinery components results in cellular dysfunction leading to various mitochondrial pathophysiological consequences. The current review highlights recent developments and understanding in the domain of Fe-S cluster assembly biology in higher eukaryotes, particularly in human cells.

摘要

铁硫 (Fe-S) 簇是从细菌到人类等生物体中普遍存在的基本无机成分。Fe-S 簇作为不同酶和蛋白质功能的辅助因子,其重要性不言而喻。Fe-S 簇的生物合成是一个高度协调的过程,需要专门的细胞机制。目前,人们对人类 Fe-S 簇生物合成的理解引起了细致的关注,因为生物合成过程中的缺陷会导致多种疾病的发生,而这些疾病目前尚无解决办法。线粒体是 Fe-S 簇生物合成的主要细胞区室,尽管真核生物(包括人类)中已经报道了细胞质生物合成机制。核心生物合成途径包括两个步骤。该过程首先在铁和硫供体蛋白存在的情况下,在平台支架蛋白上组装 Fe-S 簇。随后是将簇转移和成熟到真正的靶蛋白上。人类 Fe-S 簇生物合成机制包括线粒体铁硫簇 (ISC) 组装和输出系统以及细胞质 Fe-S 簇组装 (CIA) 机制。Fe-S 簇机制组件的损伤会导致细胞功能障碍,从而导致各种线粒体病理生理后果。本综述重点介绍了高等真核生物(特别是人类细胞)中 Fe-S 簇组装生物学的最新进展和理解。

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