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噬菌体T4编码的引发酶(gp61)在引发体形成过程中与T4复制解旋酶(gp41)及DNA的相互作用。

Interactions of bacteriophage T4-coded primase (gp61) with the T4 replication helicase (gp41) and DNA in primosome formation.

作者信息

Jing D H, Dong F, Latham G J, von Hippel P H

机构信息

Institute of Molecular Biology and Department of Chemistry, University of Oregon, Eugene, Oregon 97403, USA.

出版信息

J Biol Chem. 1999 Sep 17;274(38):27287-98. doi: 10.1074/jbc.274.38.27287.

Abstract

One primase (gp61) and six helicase (gp41) subunits interact to form the bacteriophage T4-coded primosome at the DNA replication fork. In order to map some of the detailed interactions of the primase within the primosome, we have constructed and characterized variants of the gp61 primase that carry kinase tags at either the N or the C terminus of the polypeptide chain. These tagged gp61 constructs have been probed using several analytical methods. Proteolytic digestion and protein kinase protection experiments show that specific interactions with single-stranded DNA and the T4 helicase hexamer significantly protect both the N- and the C-terminal regions of the T4 primase polypeptide chain against modification by these procedures and that this protection becomes more pronounced when the primase is assembled within the complete ternary primosome complex. Additional discrete sites of both protection and apparent hypersensitivity along the gp61 polypeptide chain have also been mapped by proteolytic footprinting reactions for the binary helicase-primase complex and in the three component primosome. These studies provide a detailed map of a number of gp61 contact positions within the primosome and reveal interactions that may be important in the structure and function of this central component of the T4 DNA replication complex.

摘要

一种引发酶(gp61)和六个解旋酶(gp41)亚基相互作用,在DNA复制叉处形成噬菌体T4编码的引发体。为了绘制引发酶在引发体内的一些详细相互作用图谱,我们构建并表征了在多肽链的N端或C端带有激酶标签的gp61引发酶变体。这些带标签的gp61构建体已通过几种分析方法进行了检测。蛋白水解消化和蛋白激酶保护实验表明,与单链DNA和T4解旋酶六聚体的特异性相互作用显著保护了T4引发酶多肽链的N端和C端区域免受这些操作的修饰,并且当引发酶组装在完整的三元引发体复合物中时,这种保护作用更加明显。通过二元解旋酶-引发酶复合物和三元引发体中的蛋白水解足迹反应,还绘制了gp61多肽链上额外的离散保护位点和明显的超敏位点。这些研究提供了引发体内多个gp61接触位置的详细图谱,并揭示了可能对T4 DNA复制复合物这个核心组件的结构和功能很重要的相互作用。

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