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A DNA repair system specific for thermophilic Archaea and bacteria predicted by genomic context analysis

机译:基因组背景分析预测的特异嗜热古细菌和细菌的DNA修复系统

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During a systematic analysis of conserved gene context in prokaryotic genomes, a previously undetected, complex, partially conserved neighborhood consisting of more than 20 genes was discovered in most Archaea (with the exception of Thermoplasma acidophilum and Halobacterium NRC-1) and some bacteria, including the hyperthermophiles Thermotoga maritima and Aquifex aeolicus. The gene composition and gene order in this neighborhood vary greatly between species, but all versions have a stable, conserved core that consists of five genes. One of the core genes encodes a predicted DNA helicase, often fused to a predicted HD-superfamily hydrolase, and another encodes a RecB family exonuclease; three core genes remain uncharacterized, but one of these might encode a nuclease of a new family. Two more genes that belong to this neighborhood and are present in most of the genomes in which the neighbor-hood was detected encode, respectively, a predicted HD-superfamily hydrolase (possibly a nuclease) of a distinct family and a predicted, novel DNA polymerase. Another characteristic feature of this neighborhood is the expansion of a superfamily of paralogous, uncharacterized proteins, which are encoded by at least 20-30% of the genes in the neighborhood. The functional features of the proteins encoded in this neighborhood suggest that they comprise a previously undetected DNA repair system, which, to our knowledge, is the first repair system largely specific for thermophiles to be identified. This hypothetical repair system might be functionally analogous to the bacterial-eukaryotic system of translesion, mutagenic repair whose central components are DNA polymerases of the UmuC-DinB-Rad30-Rev1 superfamily, which typically are missing in thermophiles.
机译:在对原核生物基因组中保守基因的背景进行系统分析时,在大多数古细菌(嗜酸嗜热菌和嗜盐杆菌NRC-1除外)和一些细菌中发现了以前未发现的,复杂的,部分保守的邻域,该邻域由20多个基因组成嗜热菌Maritoma和Aquifex aeolicus。不同物种之间该邻域的基因组成和基因顺序差异很大,但所有版本均具有由五个基因组成的稳定,保守的核心。核心基因之一编码通常与预测的HD超家族水解酶融合的预测DNA解旋酶,另一个则编码RecB家族核酸外切酶。三个核心基因仍未鉴定,但其中一个可能编码一个新家族的核酸酶。属于该邻域的两个其他基因均存在于检测到邻居的大多数基因组中,分别编码不同家族的预测的超家族水解酶(可能是核酸酶)和预测的新型DNA聚合酶。 。该邻域的另一个特征是旁系同源,未表征的蛋白质的超家族的扩展,该家族由邻域中至少20-30%的基因编码。在该邻域中编码的蛋白质的功能特征表明,它们包含一个先前未发现的DNA修复系统,据我们所知,这是第一个对待鉴定的嗜热菌具有特异特异性的修复系统。这种假设性的修复系统可能在功能上类似于细菌的真核生物系统,即诱变修复,其主要成分是UmuC-DinB-Rad30-Rev1超家族的DNA聚合酶,通常在嗜热菌中缺失。

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