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在蛋白质序列中作为水生栖热菌门特征的分子特征。

Molecular signatures in protein sequences that are characteristics of the phylum Aquificae.

作者信息

Griffiths Emma, Gupta Radhey S

机构信息

Department of Biochemistry, McMaster University, Hamilton, Ontario, Canada L8N 3Z5.

出版信息

Int J Syst Evol Microbiol. 2006 Jan;56(Pt 1):99-107. doi: 10.1099/ijs.0.63927-0.

Abstract

Species of the phylum Aquificae are of great interest due to their strict extreme thermophilic growth characteristics. Presently, there is no known molecular characteristic which is unique to this group of bacteria. This work describes six conserved inserts and deletions (indels or signature sequences) in four widely distributed proteins that are distinctive features of species from the phylum Aquificae. These include three signatures consisting of a 2 aa insert, a 5-6 aa insert and a 6 aa deletion in DNA polymerase I (PolA), a 6-7 aa insert in glucose-inhibited protein A (GidA), a 52 aa insert in the RNA polymerase beta'-subunit (RpoC) and a 4 aa insert in elongation factor Tu (EF-Tu). Fragments of these genes were amplified in most cases from Hydrogenobacter hydrogenophilus, Hydrogenothermus marinus and Thermocrinis ruber and combined with available sequence data from 'Aquifex aeolicus' and Sulfurihydrogenibium azorense. The presence of the PolA, GidA and RpoC indels in all of the species sequenced provides evidence that they are probably distinctive characteristics of the entire phylum. The indel in EF-Tu, which is shared by Aquifex species and Hydrogenobacter but not Hydrogenothermus and Sulfurihydrogenibium, may provide a molecular marker for the family Aquificaceae. We have also identified a 51 aa insert in SecA preprotein translocase that is commonly shared by various species of the Aquificae as well as two Thermotoga species (Thermotoga maritima and Thermotoga neapolitana) which may be due to lateral gene transfer between these groups. In phylogenetic trees based on a concatenated dataset of fragments from eight different proteins as well as 16S rRNA, the observed branching pattern of these species was very similar and it was consistent with the relationships inferred from various indels. The identified indels provide a novel means for distinguishing species of the Aquificae from all other bacteria in molecular terms and may prove useful for functional studies aimed at understanding the unique biochemical and physiological characteristics of the Aquificae.

摘要

由于水栖菌门物种具有严格的嗜热生长特性,因此备受关注。目前,尚无已知的该类细菌特有的分子特征。本研究描述了四种广泛分布的蛋白质中的六个保守插入和缺失(插入缺失或特征序列),这些是水栖菌门物种的显著特征。其中包括DNA聚合酶I(PolA)中的三个特征序列,分别为2个氨基酸的插入、5 - 6个氨基酸的插入和6个氨基酸的缺失;葡萄糖抑制蛋白A(GidA)中的6 - 7个氨基酸的插入;RNA聚合酶β'亚基(RpoC)中的52个氨基酸的插入;以及延伸因子Tu(EF - Tu)中的4个氨基酸的插入。在大多数情况下,这些基因片段是从嗜氢氢杆菌、海栖热袍菌和红热栖热菌中扩增得到的,并与来自“嗜热栖热放线菌”和阿佐尔硫氢还原菌的现有序列数据相结合。所有测序物种中PolA、GidA和RpoC插入缺失的存在提供了证据,表明它们可能是整个门的独特特征。EF - Tu中的插入缺失,存在于嗜热栖热放线菌属物种和氢杆菌中,但不存在于海栖热袍菌和阿佐尔硫氢还原菌中,这可能为水栖菌科提供一个分子标记。我们还在SecA前体蛋白转位酶中鉴定出一个51个氨基酸的插入,该插入在水栖菌门的各种物种以及两种嗜热栖热菌属物种(嗜热栖热放线菌和那不勒斯嗜热栖热放线菌)中普遍存在,这可能是由于这些类群之间的横向基因转移。在基于八个不同蛋白质片段以及16S rRNA的串联数据集构建的系统发育树中,这些物种的观察分支模式非常相似,并且与从各种插入缺失推断出的关系一致。所鉴定的插入缺失为从分子角度区分水栖菌门物种与所有其他细菌提供了一种新方法,并且可能对旨在了解水栖菌门独特生化和生理特征的功能研究有用。

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