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DNA 引物合成起始的分子基础。

Molecular basis for the initiation of DNA primer synthesis.

机构信息

Genome Damage and Stability Centre, School of Life Sciences, University of Sussex, Brighton, UK.

Department of Chemistry, University of North Texas, Denton, TX, USA.

出版信息

Nature. 2022 May;605(7911):767-773. doi: 10.1038/s41586-022-04695-0. Epub 2022 May 4.

Abstract

During the initiation of DNA replication, oligonucleotide primers are synthesized de novo by primases and are subsequently extended by replicative polymerases to complete genome duplication. The primase-polymerase (Prim-Pol) superfamily is a diverse grouping of primases, which includes replicative primases and CRISPR-associated primase-polymerases (CAPPs) involved in adaptive immunity. Although much is known about the activities of these enzymes, the precise mechanism used by primases to initiate primer synthesis has not been elucidated. Here we identify the molecular bases for the initiation of primer synthesis by CAPP and show that this mechanism is also conserved in replicative primases. The crystal structure of a primer initiation complex reveals how the incoming nucleotides are positioned within the active site, adjacent to metal cofactors and paired to the templating single-stranded DNA strand, before synthesis of the first phosphodiester bond. Furthermore, the structure of a Prim-Pol complex with double-stranded DNA shows how the enzyme subsequently extends primers in a processive polymerase mode. The structural and mechanistic studies presented here establish how Prim-Pol proteins instigate primer synthesis, revealing the requisite molecular determinants for primer synthesis within the catalytic domain. This work also establishes that the catalytic domain of Prim-Pol enzymes, including replicative primases, is sufficient to catalyse primer formation.

摘要

在 DNA 复制的起始阶段,寡核苷酸引物由引物酶从头合成,随后由复制聚合酶延伸,以完成基因组复制。引物酶-聚合酶(Prim-Pol)超家族是一个多样化的引物酶群体,包括参与适应性免疫的复制引物酶和 CRISPR 相关的引物酶-聚合酶(CAPP)。尽管人们对这些酶的活性了解很多,但引物酶启动引物合成的确切机制尚未阐明。在这里,我们确定了 CAPP 启动引物合成的分子基础,并表明该机制在复制引物酶中也保守。引物起始复合物的晶体结构揭示了在第一个磷酸二酯键合成之前,进入的核苷酸如何在活性位点内定位,靠近金属辅因子并与模板单链 DNA 链配对,然后进行合成。此外,双链 DNA 的 Prim-Pol 复合物的结构显示了该酶如何随后以连续聚合酶模式延伸引物。这里呈现的结构和机制研究确立了 Prim-Pol 蛋白如何引发引物合成,揭示了催化结构域内引物合成所需的分子决定因素。这项工作还表明,包括复制引物酶在内的 Prim-Pol 酶的催化结构域足以催化引物形成。

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