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通过动态SopA聚合物进行细菌DNA分离

Bacterial DNA segregation by dynamic SopA polymers.

作者信息

Lim Grace E, Derman Alan I, Pogliano Joe

机构信息

Division of Biological Sciences, University of California at San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0377, USA.

出版信息

Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17658-63. doi: 10.1073/pnas.0507222102. Epub 2005 Nov 23.

Abstract

Many bacterial plasmids and chromosomes rely on ParA ATPases for proper positioning within the cell and for efficient segregation to daughter cells. Here we demonstrate that the F-plasmid-partitioning protein SopA polymerizes into filaments in an ATP-dependent manner in vitro, and that the filaments elongate at a rate that is similar to that of plasmid separation in vivo. We show that SopA is a dynamic protein within the cell, undergoing cycles of polymerization and depolymerization, and shuttling back and forth between nucleoprotein complexes that are composed of the SopB protein bound to sopC-containing plasmids (SopB/sopC). The dynamic behavior of SopA is critical for Sop-mediated plasmid DNA segregation; mutations that lock SopA into a static polymer in the cell inhibit plasmid segregation. We show that SopA colocalizes with SopB/sopC in the cell and that SopB/sopC nucleates the assembly of SopA and is required for its dynamic behavior. When SopA is polymerized in vitro in the presence of SopB and sopC-containing DNA, SopA filaments emanate from the plasmid DNA in radial asters. We propose a mechanism in which plasmid separation is driven by the polymerization of SopA, and we speculate that the radial assembly of SopA polymers is responsible for positioning plasmids both before and after segregation.

摘要

许多细菌质粒和染色体依赖于ParA ATP酶在细胞内正确定位并有效分离到子代细胞中。在此,我们证明F质粒分配蛋白SopA在体外以ATP依赖的方式聚合成丝,且这些丝的伸长速率与体内质粒分离速率相似。我们表明SopA在细胞内是一种动态蛋白,经历聚合和解聚循环,并在由与含sopC质粒结合的SopB蛋白组成的核蛋白复合物(SopB/sopC)之间来回穿梭。SopA的动态行为对于Sop介导的质粒DNA分离至关重要;使SopA在细胞内锁定为静态聚合物的突变会抑制质粒分离。我们表明SopA在细胞内与SopB/sopC共定位,且SopB/sopC促使SopA组装并是其动态行为所必需的。当SopA在含有SopB和含sopC DNA的情况下在体外聚合时,SopA丝从质粒DNA呈放射状星状体发出。我们提出一种机制,其中质粒分离由SopA的聚合驱动,并且我们推测SopA聚合物的放射状组装负责在分离前后定位质粒。

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