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ClpX和MuB与Mu转座酶的重叠区域相互作用:对转座途径控制的影响。

ClpX and MuB interact with overlapping regions of Mu transposase: implications for control of the transposition pathway.

作者信息

Levchenko I, Yamauchi M, Baker T A

机构信息

Howard Hughes Medical Institute, Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Genes Dev. 1997 Jun 15;11(12):1561-72. doi: 10.1101/gad.11.12.1561.

Abstract

Transposition of phage Mu is catalyzed by an extremely stable transposase-DNA complex. Once recombination is complete, the Escherichia coli ClpX protein, a member of the Clp/Hsp100 chaperone family, initiates disassembly of the complex for phage DNA replication to commence. To understand how the transition between recombination and replication is controlled, we investigated how transposase-DNA complexes are recognized by ClpX. We find that a 10-amino-acid peptide from the carboxy-terminal domain of transposase is required for its recognition by ClpX. This short, positively charged peptide is also sufficient to convert a heterologous protein into a ClpX substrate. The region of transposase that interacts with the transposition activator, MuB protein, is also defined further and found to overlap with that recognized by ClpX. As a consequence, MuB inhibits disassembly of several transposase-DNA complexes that are intermediates in recombination. This ability of MuB to block access to transposase suggests a mechanism for restricting ClpX-mediated remodeling to the proper stage during replicative transposition. We propose that overlap of sequences involved in subunit interactions and those that target a protein for remodeling or destruction may be a useful design for proteins that function in pathways where remodeling or degradation must be regulated.

摘要

噬菌体Mu的转座由一种极其稳定的转座酶-DNA复合物催化。一旦重组完成,大肠杆菌ClpX蛋白(Clp/Hsp100伴侣蛋白家族的成员)就会启动该复合物的拆解,以便噬菌体DNA复制开始。为了理解重组和复制之间的转换是如何被控制的,我们研究了ClpX如何识别转座酶-DNA复合物。我们发现,转座酶羧基末端结构域的一个10氨基酸肽段是ClpX识别它所必需的。这个短的、带正电荷的肽段也足以将一种异源蛋白转化为ClpX的底物。与转座激活因子MuB蛋白相互作用的转座酶区域也得到了进一步界定,并且发现它与ClpX识别的区域重叠。因此,MuB抑制了几种作为重组中间体的转座酶-DNA复合物的拆解。MuB阻止接近转座酶的这种能力提示了一种在复制性转座过程中将ClpX介导的重塑限制在适当阶段的机制。我们提出,参与亚基相互作用的序列与那些将蛋白质作为重塑或破坏靶点的序列重叠,对于在重塑或降解必须受到调控的途径中发挥作用的蛋白质来说,可能是一种有用的设计。

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