首页> 外文期刊>Journal of Molecular Biology >Differential Action of Natural Selection on the N and C-terminal Domains of 2'-5' Oligoadenylate Synthetases and the Potential Nuclease Function of the C-terminal Domain.
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Differential Action of Natural Selection on the N and C-terminal Domains of 2'-5' Oligoadenylate Synthetases and the Potential Nuclease Function of the C-terminal Domain.

机译:自然选择对2'-5'寡腺苷酸合成酶N和C末端域的差异作用以及C末端域的潜在核酸酶功能。

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摘要

2'-5' Oligoadenylate synthetases (OAS) are a family of enzymes, which are best known for their important role in interferon-dependent antiviral mechanisms, but are also involved in the regulation of apoptosis, cell growth and differentiation in vertebrates. These enzymes bind double-stranded RNA and catalyze the synthesis of 2'-5' oligoadenylates from ATP. Several 2'-5' oligoadenylate synthetase-like proteins, which lack the ability to synthesize 2'-5' A, have been recently identified in humans and mice; the functions of these inactivated OAS derivatives remain unknown. Examination of phylogenetic trees shows that OAS inactivation in mammals occurred on several independent occasions. Comparative sequence analysis of OAS, poly(A)-polymerases, TRF4/sigma-family polymerases, archaeal CCA-adding enzymes and uridilyltransferases from trypanosomes resulted in the identification of a C-terminal domain, which is conserved in all these enzymes and is distinct from the nucleotidyltransferase domain. Secondary structure prediction shows that this domain has a four-helix core, which is most closely related to the ATP-cone domain, a regulatory nucleotide-binding domain present in ribonucleotide reductases and several other enzymes and transcription regulators. These observations, taken together with the experimental evidence of nuclease activity in the TRF4/sigma-family of polymerases, suggest that the C-terminal domain of OAS and their homologs might have nuclease activity. The putative nuclease domain is preferentially conserved in OAS derivatives that lack an active nucleotidyltransferase domain and, as indicated by the analysis of the ratio of synonymous to non-synonymous substitutions, appears to be subject to purifying selection in these proteins. In contrast, phylogenetic analysis provided evidence of episodic positive selection in the mouse OAS-like proteins with inactivated nucleotidyltransferase domains, which suggests that some of these proteins might have distinct antiviral functions.
机译:2'-5'寡腺苷酸合成酶(OAS)是一类酶,以其在干扰素依赖性抗病毒机制中的重要作用而闻名,但也参与脊椎动物凋亡,细胞生长和分化的调控。这些酶结合双链RNA,并催化从ATP合成2'-5'寡腺苷酸。最近在人和小鼠中发现了几种缺乏2'-5'A合成能力的2'-5'寡腺苷酸合成酶样蛋白。这些灭活的OAS衍生物的功能仍然未知。对系统树的检查表明,哺乳动物中的OAS灭活在几种独立的情况下发生。 OAS,聚(A)聚合酶,TRF4 / sigma家族聚合酶,古细菌添加CCA的酶和来自锥虫的尿嘧啶转移酶的比较序列分析导致鉴定出C末端结构域,该结构在所有这些酶中均是保守的,并且与众不同来自核苷酸转移酶结构域。二级结构预测表明,该结构域具有一个四螺旋核心,与ATP锥体结构域,存在于核糖核苷酸还原酶和其他几种酶及转录调节因子中的调节性核苷酸结合结构域最密切相关。这些观察结果以及聚合酶TRF4 / sigma家族中核酸酶活性的实验证据表明,OAS的C末端结构域及其同源物可能具有核酸酶活性。推定的核酸酶结构域在缺少活性核苷酸转移酶结构域的OAS衍生物中优先保守,并且,如对同义与非同义取代比例的分析所表明的那样,似乎需要纯化这些蛋白。相比之下,系统发育分析提供了具有灭活的核苷酸转移酶结构域的小鼠OAS样蛋白中间歇性阳性选择的证据,这表明这些蛋白中的某些可能具有独特的抗病毒功能。

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