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一个保守的顺式脯氨酸可阻止硫氧还蛋白家族蛋白质成员中活性位点硫醇盐与金属结合。

A conserved cis-proline precludes metal binding by the active site thiolates in members of the thioredoxin family of proteins.

作者信息

Su Dan, Berndt Carsten, Fomenko Dmitri E, Holmgren Arne, Gladyshev Vadim N

机构信息

Department of Biochemistry, Univeristy of Nebraska-Lincoln, Lincoln, Nebraska 68588-0664, USA.

出版信息

Biochemistry. 2007 Jun 12;46(23):6903-10. doi: 10.1021/bi700152b. Epub 2007 May 16.

Abstract

Many thioredoxin-fold proteins possess a conserved cis-proline located in their C-terminal portions. This residue, as well as catalytic and resolving cysteines, is a key functional group in the active sites of these thiol-disulfide oxidoreductases. However, the specific function of the proline is poorly understood, and some thioredoxin-fold proteins lack this residue. Herein, we found that mutation of a cis-proline, Pro75, in human thioredoxin to serine, threonine, or alanine leads to the formation of an Fe2-S2 cluster in this protein. Further mutagenesis studies revealed that the first cysteine in the CxxC motif and a cysteine in the C-terminal region of the protein were responsible for metal binding. Replacement of Pro75 with arginine, a residue that occurs in place of Pro in peroxiredoxins, also led to the formation of the cluster in the thioredoxin. In addition, we found that mutation of the TxxC active site in a peroxiredoxin to the CxxC form could lead to coordination of an Fe2-S2 cluster in these proteins in vitro. Sco1, a distantly related thioredoxin-fold protein, has histidine in place of the cis-proline, and this residue binds copper. The Pro75His mutation led to increased copper binding by human thioredoxin when cells were grown in the presence of this trace element. Taken together, our data suggest that an important function of Pro75 in human thioredoxin, and likely other members of this superfamily, is to prevent metal binding by the reactive thiolate-based active site.

摘要

许多硫氧还蛋白折叠蛋白在其C末端部分含有一个保守的顺式脯氨酸。该残基以及催化性和还原性半胱氨酸是这些硫醇 - 二硫化物氧化还原酶活性位点中的关键官能团。然而,脯氨酸的具体功能尚不清楚,并且一些硫氧还蛋白折叠蛋白缺乏该残基。在此,我们发现人硫氧还蛋白中顺式脯氨酸Pro75突变为丝氨酸、苏氨酸或丙氨酸会导致该蛋白中形成Fe2-S2簇。进一步的诱变研究表明,CxxC基序中的第一个半胱氨酸和该蛋白C末端区域中的一个半胱氨酸负责金属结合。用精氨酸取代Pro75,精氨酸是过氧化物酶中取代Pro的残基,也导致硫氧还蛋白中形成簇。此外,我们发现过氧化物酶中TxxC活性位点突变为CxxC形式可导致这些蛋白在体外形成Fe2-S2簇的配位。Sco1是一种远缘相关的硫氧还蛋白折叠蛋白,其组氨酸取代了顺式脯氨酸,并且该残基结合铜。当细胞在这种微量元素存在下生长时,Pro75His突变导致人硫氧还蛋白的铜结合增加。综上所述,我们的数据表明Pro75在人硫氧还蛋白以及该超家族的其他成员中具有重要功能,即防止基于硫醇盐的反应性活性位点结合金属。

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