首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Telomerase and Retrotransposons: Reverse Transcriptases That Shaped Genomes Special Feature Sackler Colloquium: A widespread class of reverse transcriptase-related cellular genes
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Telomerase and Retrotransposons: Reverse Transcriptases That Shaped Genomes Special Feature Sackler Colloquium: A widespread class of reverse transcriptase-related cellular genes

机译:端粒酶和逆转座子:塑造基因组的逆转录酶特征萨克勒讨论会:一类广泛的逆转录酶相关的细胞基因

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摘要

Reverse transcriptases (RTs) polymerize DNA on RNA templates. They fall into several structurally related but distinct classes and form an assemblage of RT-like enzymes that, in addition to RTs, also includes certain viral RNA-dependent RNA polymerases (RdRP) synthesizing RNA on RNA templates. It is generally believed that most RT-like enzymes originate from retrotransposons or viruses and have no specific function in the host cell, with telomerases being the only notable exception. Here we report on the discovery and properties of a unique class of RT-related cellular genes collectively named rvt. We present evidence that rvts are not components of retrotransposons or viruses, but single-copy genes with a characteristic domain structure that may contain introns in evolutionarily conserved positions, occur in syntenic regions, and evolve under purifying selection. These genes can be found in all major taxonomic groups including protists, fungi, animals, plants, and even bacteria, although they exhibit patchy phylogenetic distribution in each kingdom. We also show that the RVT protein purified from one of its natural hosts, Neurospora crassa, exists in a multimeric form and has the ability to polymerize NTPs as well as dNTPs in vitro, with a strong preference for NTPs, using Mn2+ as a cofactor. The existence of a previously unknown class of single-copy RT-related genes calls for reevaluation of the current views on evolution and functional roles of RNA-dependent polymerases in living cells.
机译:逆转录酶(RTs)在RNA模板上聚合DNA。它们属于结构上相关但又不同的几类,并形成类似RT的酶的集合,除了RT之外,还包括某些病毒RNA依赖性RNA聚合酶(RdRP),可在RNA模板上合成RNA。一般认为,大多数RT样酶都来自逆转录转座子或病毒,并且在宿主细胞中没有特定功能,端粒酶是唯一值得注意的例外。在这里,我们报道了一类独特的与RT相关的细胞基因(统称为rvt)的发现和性质。我们目前的证据表明,rvts不是逆转录转座子或病毒的组成部分,而是具有特征域结构的单拷贝基因,该结构域可能在进化保守位置包含内含子,出现在同义区域,并在纯化选择下进化。这些基因可以在所有主要分类学组中找到,包括原生生物,真菌,动物,植物,甚至细菌,尽管它们在每个王国中都显示出斑驳的系统发育分布。我们还显示,从其自然宿主之一Neurospora crassa中纯化得到的RVT蛋白以多聚体形式存在,并且具有使用Mn 2在体外聚合NTP和dNTP的能力,并且强烈偏爱NTPs + 作为辅助因子。以前未知的与单拷贝RT相关的基因类别的存在要求重新评估关于RNA依赖的聚合酶在活细胞中的进化和功能作用的当前观点。

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