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大肠杆菌主要复制解旋酶DnaB蛋白DNA结合位点的功能和结构异质性。

Functional and structural heterogeneity of the DNA binding site of the Escherichia coli primary replicative helicase DnaB protein.

作者信息

Jezewska M J, Rajendran S, Bujalowski W

机构信息

Department of Human Biological Chemistry and Genetics and the Sealy Center for Structural Biology, University of Texas Medical Branch at Galveston, Galveston, Texas 77555-1053, USA.

出版信息

J Biol Chem. 1998 Apr 10;273(15):9058-69. doi: 10.1074/jbc.273.15.9058.

Abstract

The structure-function relationship within the DNA binding site of the Escherichia coli replicative helicase DnaB protein was studied using nuclease digestion, quantitative fluorescence titration, centrifugation, and fluorescence energy transfer techniques. Nuclease digestion of the enzyme-single-stranded DNA (ssDNA) complexes reveals large structural heterogeneity within the binding site. The total site is built of two subsites differing in structure and affinity, although both occlude approximately 10 nucleotides. ssDNA affinity for the strong subsite is approximately 3 orders of magnitude higher than that for the weak subsite. Fluorescence energy transfer experiments provide direct proof that the DnaB hexamer binds ssDNA in a single orientation, with respect to the polarity of the sugar-phosphate backbone. This is the first evidence of directional binding to ssDNA of a hexameric helicase in solution. The strong binding subsite is close to the small 12-kDa domains of the DnaB hexamer and occludes the 5'-end of the ssDNA. The strict orientation of the helicase on ssDNA indicates that, when the enzyme approaches the replication fork, it faces double-stranded DNA with its weak subsite. The data indicate that the different binding subsites are located sequentially, with the weak binding subsite constituting the entry site for double-stranded DNA of the replication fork.

摘要

利用核酸酶消化、定量荧光滴定、离心和荧光能量转移技术,研究了大肠杆菌复制解旋酶DnaB蛋白DNA结合位点内的结构-功能关系。核酸酶对酶-单链DNA(ssDNA)复合物的消化揭示了结合位点内存在很大的结构异质性。整个结合位点由两个结构和亲和力不同的亚位点组成,尽管两者都能封闭大约10个核苷酸。ssDNA对强亚位点的亲和力比对弱亚位点的亲和力高约3个数量级。荧光能量转移实验提供了直接证据,表明DnaB六聚体相对于糖-磷酸主链的极性以单一方向结合ssDNA。这是溶液中六聚体解旋酶与ssDNA定向结合的首个证据。强结合亚位点靠近DnaB六聚体的小12 kDa结构域,并封闭ssDNA的5'端。解旋酶在ssDNA上的严格取向表明,当酶接近复制叉时,其弱亚位点面向双链DNA。数据表明,不同的结合亚位点是依次定位的,弱结合亚位点构成复制叉双链DNA的进入位点。

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