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DNA解旋酶在酵母复制起点的DNA解旋元件上的装载:模型系统中的DNA复制机制

Loading of a DNA helicase on the DNA unwinding element in the yeast replication origin: mechanism of DNA replication in a model system.

作者信息

Ishimi Y, Matsumoto K

机构信息

Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.

出版信息

Biochemistry. 1994 Mar 8;33(9):2733-40. doi: 10.1021/bi00175a049.

Abstract

We found that initiation of DNA replication occurs from the region containing the yeast autonomously replicating sequence 1 (ARS1), by incubating negatively supercoiled plasmid DNA with the proteins required for SV40 DNA replication in addition to DNA gyrase (Ishimi, Y., & Matsumoto, K. (1993) Proc. Natl. Acad. Sci. U.S.A. 90, 5399-5403). Here, the mechanism of DNA replication and the roles of the replication proteins in this model system were analyzed. Both SV40 T antigen as a DNA helicase and multisubunit human single-stranded DNA binding protein (HSSB) (also called RP-A) were required for the initial step of DNA synthesis. Furthermore, it has been shown that T antigen plays an essential role in the initiation of DNA replication from the ARS region in this system. The digestion of negatively supercoiled DNA with the single-strand-specific nuclease P1 revealed that regions containing A, B, and C domains of ARS1 can be unwound under the conditions used for DNA replication. Footprinting with KMnO4 indicated that T antigen interacted with the unwound B domain where initiation of DNA replication mainly occurred. When circular DNAs of different negative-superhelical densities were replicated in the absence of DNA gyrase, short fragments were synthesized from the ARS region in proportion to its density and they were elongated by addition of HeLa topoisomerase I, which inhibits the initiation of DNA replication in this system.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们发现,通过将负超螺旋质粒DNA与SV40 DNA复制所需的蛋白质以及DNA回旋酶一起孵育,DNA复制起始于包含酵母自主复制序列1(ARS1)的区域(石见义明和松本健,1993年,《美国国家科学院院刊》90卷,5399 - 5403页)。在此,分析了该模型系统中DNA复制的机制以及复制蛋白的作用。DNA合成的起始步骤需要SV40 T抗原作为DNA解旋酶以及多亚基人单链DNA结合蛋白(HSSB,也称为RP - A)。此外,已经表明T抗原在该系统中从ARS区域起始DNA复制过程中起着至关重要的作用。用单链特异性核酸酶P1消化负超螺旋DNA表明,在用于DNA复制的条件下,包含ARS1的A、B和C结构域的区域可以解旋。用高锰酸钾进行足迹分析表明,T抗原与DNA复制主要起始的解旋B结构域相互作用。当在没有DNA回旋酶存在的情况下复制不同负超螺旋密度的环状DNA时,从ARS区域合成了与其密度成比例的短片段,并且通过添加HeLa拓扑异构酶I使其延长,HeLa拓扑异构酶I在该系统中抑制DNA复制的起始。(摘要截于250字)

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