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II 型磷酸泛酰巯基乙胺基转移酶中 Asp-Xxx-Glu 三联体的特征及进化意义

Characterization and evolutionary implications of the triad Asp-Xxx-Glu in group II phosphopantetheinyl transferases.

作者信息

Wang Yue-Yue, Li Yu-Dong, Liu Jian-Bo, Ran Xin-Xin, Guo Yuan-Yang, Ren Ni-Ni, Chen Xin, Jiang Hui, Li Yong-Quan

机构信息

College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.

Department of Bioengineering, Zhejiang Gongshang University, Hangzhou, Zhejiang, China.

出版信息

PLoS One. 2014 Jul 18;9(7):e103031. doi: 10.1371/journal.pone.0103031. eCollection 2014.

Abstract

Phosphopantetheinyl transferases (PPTases), which play an essential role in both primary and secondary metabolism, are magnesium binding enzymes. In this study, we characterized the magnesium binding residues of all known group II PPTases by biochemical and evolutionary analysis. Our results suggested that group II PPTases could be classified into two subgroups, two-magnesium-binding-residue-PPTases containing the triad Asp-Xxx-Glu and three-magnesium-binding-residue-PPTases containing the triad Asp-Glu-Glu. Mutations of two three-magnesium-binding-residue-PPTases and one two-magnesium-binding-residue-PPTase indicate that the first and the third residues in the triads are essential to activities; the second residues in the triads are non-essential. Although variations of the second residues in the triad Asp-Xxx-Glu exist throughout the whole phylogenetic tree, the second residues are conserved in animals, plants, algae, and most prokaryotes, respectively. Evolutionary analysis suggests that: the animal group II PPTases may originate from one common ancestor; the plant two-magnesium-binding-residue-PPTases may originate from one common ancestor; the plant three-magnesium-binding-residue-PPTases may derive from horizontal gene transfer from prokaryotes.

摘要

磷酸泛酰巯基乙胺基转移酶(PPTases)在初级和次级代谢中均发挥着重要作用,是一类与镁结合的酶。在本研究中,我们通过生化和进化分析对所有已知的II类PPTases的镁结合残基进行了表征。我们的结果表明,II类PPTases可分为两个亚组,即含有Asp-Xxx-Glu三联体的双镁结合残基PPTases和含有Asp-Glu-Glu三联体的三镁结合残基PPTases。对两种三镁结合残基PPTases和一种双镁结合残基PPTase的突变分析表明,三联体中的第一个和第三个残基对活性至关重要;三联体中的第二个残基则并非必需。尽管在整个系统发育树中,Asp-Xxx-Glu三联体中的第二个残基存在变异,但在动物、植物、藻类和大多数原核生物中,第二个残基分别是保守的。进化分析表明:动物II类PPTases可能起源于一个共同祖先;植物双镁结合残基PPTases可能起源于一个共同祖先;植物三镁结合残基PPTases可能源自原核生物的水平基因转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbcd/4103896/ac0a552f9a2e/pone.0103031.g001.jpg

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