Magnetic Resonance Center CERM, University of Florence, 50019 Sesto Fiorentino, Italy.
Consorzio Interuniversitario Risonanze Magnetiche di Metalloproteine (CIRMMP), 50019 Sesto Fiorentino, Italy.
Biomolecules. 2022 Jul 21;12(7):1009. doi: 10.3390/biom12071009.
The importance of mitochondria in mammalian cells is widely known. Several biochemical reactions and pathways take place within mitochondria: among them, there are those involving the biogenesis of the iron-sulfur (Fe-S) clusters. The latter are evolutionarily conserved, ubiquitous inorganic cofactors, performing a variety of functions, such as electron transport, enzymatic catalysis, DNA maintenance, and gene expression regulation. The synthesis and distribution of Fe-S clusters are strictly controlled cellular processes that involve several mitochondrial proteins that specifically interact each other to form a complex machinery (Iron Sulfur Cluster assembly machinery, ISC machinery hereafter). This machinery ensures the correct assembly of both [2Fe-2S] and [4Fe-4S] clusters and their insertion in the mitochondrial target proteins. The present review provides a structural and molecular overview of the rare diseases associated with the genes encoding for the accessory proteins of the ISC machinery (i.e., GLRX5, ISCA1, ISCA2, IBA57, FDX2, BOLA3, IND1 and NFU1) involved in the assembly and insertion of [4Fe-4S] clusters in mitochondrial proteins. The disease-related missense mutations were mapped on the 3D structures of these accessory proteins or of their protein complexes, and the possible impact that these mutations have on their specific activity/function in the frame of the mitochondrial [4Fe-4S] protein biogenesis is described.
线粒体在哺乳动物细胞中的重要性是众所周知的。有几种生化反应和途径发生在线粒体中:其中包括涉及铁硫(Fe-S)簇生物发生的反应。后者是进化上保守的、普遍存在的无机辅因子,具有多种功能,如电子传递、酶催化、DNA 维持和基因表达调控。Fe-S 簇的合成和分布是严格控制的细胞过程,涉及几种线粒体蛋白,这些蛋白特异性地相互作用,形成一个复杂的机器(铁硫簇组装机器,ISC 机器)。该机器确保了 [2Fe-2S] 和 [4Fe-4S] 簇的正确组装,并将其插入线粒体靶蛋白中。本文综述了与编码 ISC 机器辅助蛋白(即 GLRX5、ISCA1、ISCA2、IBA57、FDX2、BOLA3、IND1 和 NFU1)的基因相关的罕见疾病的结构和分子概述,这些蛋白参与线粒体蛋白中 [4Fe-4S] 簇的组装和插入。疾病相关的错义突变被映射到这些辅助蛋白或其蛋白复合物的 3D 结构上,并描述了这些突变对其在线粒体 [4Fe-4S] 蛋白生物发生框架中的特定活性/功能的可能影响。