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The RNase H-like superfamily: new members, comparative structural analysis and evolutionary classification

机译:RNase H样超家族:新成员,比较结构分析和进化分类

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Ribonuclease H-like (RNHL) superfamily, also called the retroviral integrase superfamily, groups together numerous enzymes involved in nucleic acid metabolism and implicated in many biological processes, including replication, homologous recombination, DNA repair, transposition and RNA interference. The RNHL superfamily proteins show extensive divergence of sequences and structures. We conducted database searches to identify members of the RNHL superfamily (including those previously unknown), yielding > 60 000 unique domain sequences. Our analysis led to the identification of new RNHL superfamily members, such as RRXRR (PF14239), DUF460 (PF04312, COG2433), DUF3010 (PF11215), DUF429 (PF04250 and COG2410, COG4328, COG4923), DUF1092 (PF06485), COG5558, OrfB_IS605 (PF01385, COG0675) and Peptidase_A17 (PF05380). Based on the clustering analysis we grouped all identified RNHL domain sequences into 152 families. Phylogenetic studies revealed relationships between these families, and suggested a possible history of the evolution of RNHL fold and its active site. Our results revealed clear division of the RNHL superfamily into exonucleases and endonucleases. Structural analyses of features characteristic for particular groups revealed a correlation between the orientation of the C-terminal helix with the exonuclease/endonuclease function and the architecture of the active site. Our analysis provides a comprehensive picture of sequence-structure-function relationships in the RNHL superfamily that may guide functional studies of the previously uncharacterized protein families.
机译:核糖核酸酶H样(RNHL)超家族(也称为逆转录病毒整合酶超家族)将参与核酸代谢的许多酶归类在一起,并涉及许多生物学过程,包括复制,同源重组,DNA修复,转座和RNA干扰。 RNHL超家族蛋白显示出广泛的序列和结构差异。我们进行了数据库搜索,以鉴定RNHL超家族成员(包括那些以前未知的成员),产生了超过60 000个唯一域序列。我们的分析导致确定了新的RNHL超家族成员,例如RRXRR(PF14239),DUF460(PF04312,COG2433),DUF3010(PF11215),DUF429(PF04250和COG2410,COG4328,COG4923),DUF1092(PF06485),COG5558,OrfB_IS605 (PF01385,COG0675)和肽酶_A17(PF05380)。基于聚类分析,我们将所有已识别的RNHL域序列分为152个家族。系统发育研究揭示了这些家族之间的关系,并提出了可能的RNHL折叠及其活性位点进化的历史。我们的结果表明,RNHL超家族清楚地划分为核酸外切酶和核酸内切酶。对特定组特征的结构分析表明,C末端螺旋的方向与核酸外切酶/核酸内切酶功能和活性位点的结构之间存在相关性。我们的分析为RNHL超家族中的序列-结构-功能关系提供了全面的图片,可指导先前未表征的蛋白家族的功能研究。

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