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Mia40是未折叠还原蛋白的一种易氧化剂,但异构酶活性极低。

Mia40 is a facile oxidant of unfolded reduced proteins but shows minimal isomerase activity.

作者信息

Hudson Devin A, Thorpe Colin

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, United States.

Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, United States.

出版信息

Arch Biochem Biophys. 2015 Aug 1;579:1-7. doi: 10.1016/j.abb.2015.05.005. Epub 2015 May 23.

Abstract

Mia40 participates in oxidative protein folding within the mitochondrial intermembrane space (IMS) by mediating the transfer of reducing equivalents from client proteins to FAD-linked oxidoreductases of the Erv1 family (lfALR in mammals). Here we investigate the specificity of the human Mia40/lfALR system towards non-cognate unfolded protein substrates to assess whether the efficient introduction of disulfides requires a particular amino acid sequence context or the presence of an IMS targeting signal. Reduced pancreatic ribonuclease A (rRNase), avian lysozyme, and riboflavin binding protein are all competent substrates of the Mia40/lfALR system, although they lack those sequence features previously thought to direct disulfide bond formation in cognate IMS substrates. The oxidation of rRNase by Mia40 does not limit overall turnover of unfolded substrate by the Mia40/lfALR system. Mia40 is an ineffective protein disulfide isomerase when its ability to restore enzymatic activity from scrambled RNase is compared to that of protein disulfide isomerase. Mia40's ability to bind amphipathic peptides is evident by avid binding to the isolated B-chain during the insulin reductase assay. In aggregate these data suggest that the Mia40/lfALR system has a broad sequence specificity and that potential substrates may be protected from adventitious oxidation by kinetic sequestration within the mitochondrial IMS.

摘要

Mia40通过介导还原当量从底物蛋白向Erv1家族(哺乳动物中的lfALR)的FAD连接氧化还原酶转移,参与线粒体外膜间隙(IMS)内的氧化蛋白折叠。在此,我们研究人Mia40/lfALR系统对非同源未折叠蛋白底物的特异性,以评估二硫键的有效引入是否需要特定的氨基酸序列背景或IMS靶向信号的存在。还原型胰核糖核酸酶A(rRNase)、鸡溶菌酶和核黄素结合蛋白都是Mia40/lfALR系统的有效底物,尽管它们缺乏先前认为可指导同源IMS底物中二硫键形成的序列特征。Mia40对rRNase的氧化并不限制Mia40/lfALR系统对未折叠底物的总体周转率。当将其从混乱核糖核酸酶恢复酶活性的能力与蛋白二硫键异构酶的能力进行比较时,Mia40是一种无效的蛋白二硫键异构酶。在胰岛素还原酶测定期间,Mia40与分离的B链的强烈结合表明其具有结合两亲性肽的能力。总体而言,这些数据表明Mia40/lfALR系统具有广泛的序列特异性,并且潜在底物可能通过在线粒体IMS内的动力学隔离而免受偶然氧化。

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本文引用的文献

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