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来自布氏锥虫的一种无双核锰簇的精氨酸酶样蛋白的晶体结构。

Crystal structure of an arginase-like protein from Trypanosoma brucei that evolved without a binuclear manganese cluster.

作者信息

Hai Yang, Kerkhoven Eduard J, Barrett Michael P, Christianson David W

机构信息

Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6323, United States.

出版信息

Biochemistry. 2015 Jan 20;54(2):458-71. doi: 10.1021/bi501366a. Epub 2014 Dec 23.

Abstract

The X-ray crystal structure of an arginase-like protein from the parasitic protozoan Trypanosoma brucei, designated TbARG, is reported at 1.80 and 2.38 Å resolution in its reduced and oxidized forms, respectively. The oxidized form of TbARG is a disulfide-linked hexamer that retains the overall architecture of a dimer of trimers in the reduced form. Intriguingly, TbARG does not contain metal ions in its putative active site, and amino acid sequence comparisons indicate that all but one of the residues required for coordination to the catalytically obligatory binuclear manganese cluster in other arginases are substituted here with residues incapable of metal ion coordination. Therefore, the structure of TbARG is the first of a member of the arginase/deacetylase superfamily that is not a metalloprotein. Although we show that metal binding activity is easily reconstituted in TbARG by site-directed mutagenesis and confirmed in X-ray crystal structures, it is curious that this protein and its parasitic orthologues evolved away from metal binding function. Knockout of the TbARG gene from the genome demonstrated that its function is not essential to cultured bloodstream-form T. brucei, and metabolomics analysis confirmed that the enzyme has no role in the conversion of l-arginine to l-ornithine in these cells. While the molecular function of TbARG remains enigmatic, the fact that the T. brucei genome encodes only this protein and not a functional arginase indicates that the parasite must import l-ornithine from its host to provide a source of substrate for ornithine decarboxylase in the polyamine biosynthetic pathway, an active target for the development of antiparasitic drugs.

摘要

报道了来自寄生原生动物布氏锥虫的一种精氨酸酶样蛋白(命名为TbARG)的X射线晶体结构,其还原形式和氧化形式的分辨率分别为1.80 Å和2.38 Å。TbARG的氧化形式是一种通过二硫键连接的六聚体,保留了还原形式中三聚体二聚体的整体结构。有趣的是,TbARG在其假定的活性位点不包含金属离子,氨基酸序列比较表明,与其他精氨酸酶中催化必需的双核锰簇配位所需的残基中,除一个以外的所有残基在这里都被不能进行金属离子配位的残基所取代。因此,TbARG的结构是精氨酸酶/脱乙酰酶超家族中第一个不是金属蛋白的成员的结构。虽然我们表明通过定点诱变可以很容易地在TbARG中重建金属结合活性,并在X射线晶体结构中得到证实,但奇怪的是,这种蛋白质及其寄生直系同源物在进化过程中失去了金属结合功能。从基因组中敲除TbARG基因表明,其功能对于培养的布氏锥虫血流形式并非必不可少,代谢组学分析证实该酶在这些细胞中对L-精氨酸向L-鸟氨酸的转化没有作用。虽然TbARG的分子功能仍然是个谜,但布氏锥虫基因组只编码这种蛋白质而不编码功能性精氨酸酶这一事实表明,该寄生虫必须从宿主中摄取L-鸟氨酸,以为多胺生物合成途径中的鸟氨酸脱羧酶提供底物来源,而多胺生物合成途径是抗寄生虫药物开发的一个活跃靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e012/4303290/e62015e9b87e/bi-2014-01366a_0002.jpg

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