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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Phylogenetic and coevolutionary analysis of the β-barrel protein family comprised of mitochondrial porin (VDAC) and Tom40
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Phylogenetic and coevolutionary analysis of the β-barrel protein family comprised of mitochondrial porin (VDAC) and Tom40

机译:由线粒体孔蛋白(VDAC)和Tom40组成的β-桶蛋白家族的系统发育和协同进化分析

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摘要

Beta-barrel proteins are the main transit points across the mitochondrial outer membrane. Mitochondrial porin, the voltage-dependent, anion-selective channel (VDAC), is responsible for the passage of small molecules between the mitochondrion and the cytosol. Through interactions with other mitochondrial and cellular proteins, it is involved in regulating organellar and cellular metabolism and likely contributes to mitochondrial structure. Tom40 is part of the translocase of the outer membrane, and acts as the channel for passage of preproteins during their import into the organelle. These proteins appear to share a common evolutionary origin and structure. In the current study, the evolutionary relationships between and within both proteins were investigated through phylogenetic analysis. The two groups have a common origin and have followed independent, complex evolutionary pathways, leading to the generation of paralogues in animals and plants. Structures of diverse representatives were modeled, revealing common themes rather than sites of high identity in both groups. Within each group, intramolecular coevolution was assessed, revealing a new set of sites potentially involved in structure-function relationships in these molecules. A weak link between Tom40 and proteins related to the mitochondrial distribution and morphology protein, Mdm10, was identified. This article is part of a Special Issue entitled: VDAC structure, function, and regulation of mitochondrial metabolism.
机译:β-桶蛋白是跨线粒体外膜的主要转运点。线粒体孔蛋白是电压依赖性的阴离子选择性通道(VDAC),负责线粒体和细胞质之间的小分子通过。通过与其他线粒体和细胞蛋白的相互作用,它参与调节细胞器和细胞代谢,并可能有助于线粒体的结构。 Tom40是外膜转运酶的一部分,在前蛋白导入细胞器期间充当前蛋白通过的通道。这些蛋白质似乎具有共同的进化起源和结构。在当前的研究中,通过系统进化分析研究了两种蛋白质之间以及内部的进化关系。这两类人有共同的起源,并遵循独立,复杂的进化途径,从而在动植物中产生旁系同源物。对不同代表的结构进行了建模,揭示了共同的主题,而不是在两组中都具有很高的认同感。在每个组中,评估了分子内的协同进化,揭示了可能与这些分子的结构-功能关系有关的一组新位点。已确定Tom40与与线粒体分布和形态学蛋白Mdm10相关的蛋白之间存在较弱的联系。本文是名为“ VDAC结构,功能和线粒体代谢调控”的特刊的一部分。

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