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AAA蛋白的系统发育分析。

Phylogenetic analysis of AAA proteins.

作者信息

Frickey Tancred, Lupas Andrei N

机构信息

Department of Protein Evolution, Max-Planck-Institute for Developmental Biology, Spemannstr. 35, Tübingen D-72076, Germany.

出版信息

J Struct Biol. 2004 Apr-May;146(1-2):2-10. doi: 10.1016/j.jsb.2003.11.020.

Abstract

AAA ATPases form a large protein family with manifold cellular roles. They belong to the AAA+ superfamily of ringshaped P-loop NTPases, which exert their activity through the energy-dependent unfolding of macromolecules. Phylogenetic analyses have suggested the existence of five major clades of AAA domains (proteasome subunits, metalloproteases, domains D1 and D2 of ATPases with two AAA domains, and the MSP1/katanin/spastin group), as well as a number of deeply branching minor clades. These analyses however have been characterized by a lack of consistency in defining the boundaries of the AAA family. We have used cluster analysis to delineate unambiguously the group of AAA sequences within the AAA+ superfamily. Phylogenetic and cluster analysis of this sequence set revealed the existence of a sixth major AAA clade, comprising the mitochondrial, membrane-bound protein BCS1 and its homologues. In addition, we identified several deep branches consisting mainly of hypothetical proteins resulting from genomic projects. Analysis of the AAA N-domains provided direct support for the obtained phylogeny for most branches, but revealed some deep splits that had not been apparent from phylogenetic analysis and some unexpected similarities between distant clades. It also revealed highly degenerate D1 domains in plant MSP1 sequences and in at least one deeply branching group of hypothetical proteins (YC46), showing that AAA proteins with two ATPase domains arose at least three times independently.

摘要

AAA 三磷酸腺苷酶构成了一个具有多种细胞功能的大型蛋白质家族。它们属于环状 P 环 NTP 酶的 AAA+超家族,通过依赖能量的大分子解折叠发挥其活性。系统发育分析表明存在五个主要的 AAA 结构域分支(蛋白酶体亚基、金属蛋白酶、具有两个 AAA 结构域的 ATP 酶的 D1 和 D2 结构域,以及 MSP1/katanin/spastin 组),以及一些深度分支的次要分支。然而,这些分析的特点是在定义 AAA 家族边界方面缺乏一致性。我们使用聚类分析明确界定了 AAA+超家族内的 AAA 序列组。对该序列集的系统发育和聚类分析揭示了第六个主要的 AAA 分支的存在,该分支包括线粒体膜结合蛋白 BCS1 及其同源物。此外,我们鉴定了几个主要由基因组计划产生的假定蛋白组成的深度分支。对 AAA N 结构域的分析为大多数分支的系统发育提供了直接支持,但揭示了一些系统发育分析中不明显的深度分歧以及远缘分支之间一些意想不到的相似性。它还揭示了植物 MSP1 序列和至少一个假定蛋白(YC46)的深度分支组中高度退化的 D1 结构域,表明具有两个 ATP 酶结构域的 AAA 蛋白至少独立出现了三次。

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