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依赖结合蛋白的转运系统内膜整合蛋白之间的序列关系:通过反复基因复制实现的进化

Sequence relationships between integral inner membrane proteins of binding protein-dependent transport systems: evolution by recurrent gene duplications.

作者信息

Saurin W, Dassa E

机构信息

Unité de Programmation Moléculaire et Toxicologie génétique, CNRS URA 1444, Institut Pasteur 25, Paris, France.

出版信息

Protein Sci. 1994 Feb;3(2):325-44. doi: 10.1002/pro.5560030216.

Abstract

Periplasmic binding protein-dependent transport systems are composed of a periplasmic substrate-binding protein, a set of 2 (sometimes 1) very hydrophobic integral membrane proteins, and 1 (sometimes 2) hydrophilic peripheral membrane protein that binds and hydrolyzes ATP. These systems are members of the superfamily of ABC transporters. We performed a molecular phylogenetic analysis of the sequences of 70 hydrophobic membrane proteins of these transport systems in order to investigate their evolutionary history. Proteins were grouped into 8 clusters. Within each cluster, protein sequences displayed significant similarities, suggesting that they derive from a common ancestor. Most clusters contained proteins from systems transporting analogous substrates such as monosaccharides, oligopeptides, or hydrophobic amino acids, but this was not a general rule. Proteins from diverse bacteria are found within each cluster, suggesting that the ancestors of current clusters were present before the divergence of bacterial groups. The phylogenetic trees computed for hydrophobic membrane proteins of these permeases are similar to those described for the periplasmic substrate-binding proteins. This result suggests that the genetic regions encoding binding protein-dependent permeases evolved as whole units. Based on the results of the classification of the proteins and on the reconstructed phylogenetic trees, we propose an evolutionary scheme for periplasmic permeases. According to this model, it is probable that these transport systems derive from an ancestral system having only 1 hydrophobic membrane protein.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

周质结合蛋白依赖性转运系统由周质底物结合蛋白、一组2个(有时为1个)非常疏水的整合膜蛋白以及1个(有时为2个)结合并水解ATP的亲水性外周膜蛋白组成。这些系统是ABC转运蛋白超家族的成员。我们对这些转运系统的70个疏水膜蛋白序列进行了分子系统发育分析,以研究它们的进化历史。蛋白质被分为8个簇。在每个簇内,蛋白质序列显示出显著的相似性,表明它们来自共同的祖先。大多数簇包含来自转运类似底物(如单糖、寡肽或疏水氨基酸)的系统的蛋白质,但这并非普遍规律。每个簇中都发现了来自不同细菌的蛋白质,这表明当前簇的祖先在细菌类群分化之前就已存在。为这些通透酶的疏水膜蛋白计算的系统发育树与为周质底物结合蛋白描述的系统发育树相似。这一结果表明,编码结合蛋白依赖性通透酶的基因区域是作为一个整体进化的。基于蛋白质分类结果和重建的系统发育树,我们提出了周质通透酶的进化方案。根据这个模型,这些转运系统很可能起源于一个仅具有1个疏水膜蛋白的祖先系统。(摘要截短至250字)

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