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β-桶状膜蛋白跨膜结构域中氨基酸取代模式用于检测细菌和线粒体中的远程同源物。

Pattern of amino acid substitutions in transmembrane domains of β-barrel membrane proteins for detecting remote homologs in bacteria and mitochondria.

机构信息

Department of Bioengineering, University of Illinois at Chicago, Chicago, Illinois, United States of America.

出版信息

PLoS One. 2011;6(11):e26400. doi: 10.1371/journal.pone.0026400. Epub 2011 Nov 1.

Abstract

β-barrel membrane proteins play an important role in controlling the exchange and transport of ions and organic molecules across bacterial and mitochondrial outer membranes. They are also major regulators of apoptosis and are important determinants of bacterial virulence. In contrast to β-helical membrane proteins, their evolutionary pattern of residue substitutions has not been quantified, and there are no scoring matrices appropriate for their detection through sequence alignment. Using a Bayesian Monte Carlo estimator, we have calculated the instantaneous substitution rates of transmembrane domains of bacterial β-barrel membrane proteins. The scoring matrices constructed from the estimated rates, called bbTM for β-barrel Transmembrane Matrices, improve significantly the sensitivity in detecting homologs of β-barrel membrane proteins, while avoiding erroneous selection of both soluble proteins and other membrane proteins of similar composition. The estimated evolutionary patterns are general and can detect β-barrel membrane proteins very remote from those used for substitution rate estimation. Furthermore, despite the separation of 2-3 billion years since the proto-mitochondrion entered the proto-eukaryotic cell, mitochondria outer membrane proteins in eukaryotes can also be detected accurately using these scoring matrices derived from bacteria. This is consistent with the suggestion that there is no eukaryote-specific signals for translocation. With these matrices, remote homologs of β-barrel membrane proteins with known structures can be reliably detected at genome scale, allowing construction of high quality structural models of their transmembrane domains, at the rate of 131 structures per template protein. The scoring matrices will be useful for identification, classification, and functional inference of membrane proteins from genome and metagenome sequencing projects. The estimated substitution pattern will also help to identify key elements important for the structural and functional integrity of β-barrel membrane proteins, and will aid in the design of mutagenesis studies.

摘要

β-桶状膜蛋白在控制细菌和线粒体外膜中离子和有机分子的交换和运输方面发挥着重要作用。它们也是细胞凋亡的主要调节剂,也是细菌毒力的重要决定因素。与β-螺旋膜蛋白不同,其残基替换的进化模式尚未量化,也没有适用于通过序列比对检测它们的评分矩阵。我们使用贝叶斯蒙特卡罗估计器计算了细菌β-桶状膜蛋白跨膜结构域的瞬时替换率。从估计的速率构建的评分矩阵,称为 bbTM(β-桶状跨膜矩阵),显著提高了检测β-桶状膜蛋白同源物的敏感性,同时避免了对可溶性蛋白和其他组成相似的膜蛋白的错误选择。估计的进化模式是通用的,可以检测到与用于替换率估计的β-桶状膜蛋白非常远的同源物。此外,尽管原线粒体进入原真核细胞以来已经分离了 20 亿到 30 亿年,但使用这些从细菌中衍生的评分矩阵也可以准确地检测到真核生物的线粒体外膜蛋白。这与没有用于易位的真核生物特异性信号的建议是一致的。有了这些矩阵,可以在基因组范围内可靠地检测到具有已知结构的β-桶状膜蛋白的远程同源物,以每个模板蛋白 131 个结构的速度构建其跨膜结构域的高质量结构模型。这些评分矩阵将有助于识别、分类和推断来自基因组和宏基因组测序项目的膜蛋白的功能。估计的替换模式也将有助于识别对β-桶状膜蛋白的结构和功能完整性很重要的关键元素,并有助于设计诱变研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9a9/3206045/15db6e4b528a/pone.0026400.g001.jpg

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