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DNA-Binding Proteins Essential for Protein-Primed Bacteriophage Φ29 DNA Replication

机译:DNA结合蛋白是噬菌体噬菌体Φ29DNA复制所必需的。

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摘要

Bacillus subtilis phage Φ29 has a linear, double-stranded DNA 19 kb long with an inverted terminal repeat of 6 nucleotides and a protein covalently linked to the 5′ ends of the DNA. This protein, called terminal protein (TP), is the primer for the initiation of replication, a reaction catalyzed by the viral DNA polymerase at the two DNA ends. The DNA polymerase further elongates the nascent DNA chain in a processive manner, coupling strand displacement with elongation. The viral protein p5 is a single-stranded DNA binding protein (SSB) that binds to the single strands generated by strand displacement during the elongation process. Viral protein p6 is a double-stranded DNA binding protein (DBP) that preferentially binds to the origins of replication at the Φ29 DNA ends and is required for the initiation of replication. Both SSB and DBP are essential for Φ29 DNA amplification. This review focuses on the role of these phage DNA-binding proteins in Φ29 DNA replication both in vitro and in vivo, as well as on the implication of several B. subtilis DNA-binding proteins in different processes of the viral cycle. We will revise the enzymatic activities of the Φ29 DNA polymerase: TP-deoxynucleotidylation, processive DNA polymerization coupled to strand displacement, 3′–5′ exonucleolysis and pyrophosphorolysis. The resolution of the Φ29 DNA polymerase structure has shed light on the translocation mechanism and the determinants responsible for processivity and strand displacement. These two properties have made Φ29 DNA polymerase one of the main enzymes used in the current DNA amplification technologies. The determination of the structure of Φ29 TP revealed the existence of three domains: the priming domain, where the primer residue Ser232, as well as Phe230, involved in the determination of the initiating nucleotide, are located, the intermediate domain, involved in DNA polymerase binding, and the N-terminal domain, responsible for DNA binding and localization of the TP at the bacterial nucleoid, where viral DNA replication takes place. The biochemical properties of the Φ29 DBP and SSB and their function in the initiation and elongation of Φ29 DNA replication, respectively, will be described.
机译:枯草芽孢杆菌噬菌体Φ29具有19 kb长的线性双链DNA,具有6个核苷酸的反向末端重复序列,并且蛋白质与DNA的5'端共价连接。这种蛋白质称为末端蛋白质(TP),是引发复制的引物,是病毒DNA聚合酶在两个DNA末端催化的反应。 DNA聚合酶进一步以加工方式延长新生DNA链,使链置换与延长相结合。病毒蛋白p5是单链DNA结合蛋白(SSB),它与在延伸过程中因链置换产生的单链结合。病毒蛋白p6是一种双链DNA结合蛋白(DBP),它优先与Φ29DNA末端的复制起点结合,是复制开始所必需的。 SSB和DBP对Φ29DNA扩增都是必不可少的。这篇综述着重于这些噬菌体DNA结合蛋白在体内和体外Φ29DNA复制中的作用,以及几种枯草芽孢杆菌DNA结合蛋白在病毒循环不同过程中的作用。我们将修改Φ29DNA聚合酶的酶促活性:TP-脱氧核苷酸化,与链置换相关的过程性DNA聚合,3'-5'外切核酸水解和焦磷酸解。 Φ29DNA聚合酶结构的分辨率揭示了易位机制以及决定性过程和链位移的决定因素。这两个特性使Φ29DNA聚合酶成为当前DNA扩增技术中使用的主要酶之一。 Φ29TP结构的确定揭示了三个结构域的存在:起始结构域,其中涉及确定起始核苷酸的引物残基Ser232和Phe230位于中间结构域,该结构域涉及DNA聚合酶结合和N末端域负责DNA的结合和TP在细菌核苷中的定位,在细菌核苷中发生病毒DNA复制。将分别描述Φ29DBP和SSB的生化特性及其在Φ29DNA复制的起始和延伸中的功能。

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