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依赖两个识别位点的DNA限制作用:大肠杆菌中SfiI限制修饰系统的活性

DNA restriction dependent on two recognition sites: activities of the SfiI restriction-modification system in Escherichia coli.

作者信息

Bilcock D T, Halford S E

机构信息

Department of Biochemistry, School of Medical Sciences, University of Bristol, UK.

出版信息

Mol Microbiol. 1999 Feb;31(4):1243-54. doi: 10.1046/j.1365-2958.1999.01266.x.

Abstract

In contrast to many type II restriction enzymes, dimeric proteins that cleave DNA at individual recognition sites 4-6 bp long, the SfiI endonuclease is a tetrameric protein that binds to two copies of an elongated sequence before cutting the DNA at both sites. The mode of action of the SfiI endonuclease thus seems more appropriate for DNA rearrangements than for restriction. To elucidate its biological function, strains of Escherichia coli expressing the SfiI restriction-modification system were transformed with plasmids carrying SfiI sites. The SfiI system often failed to restrict the survival of a plasmid with one SfiI site, but plasmids with two or more sites were restricted efficiently. Plasmids containing methylated SfI sites were not restricted. No rearrangements of the plasmids carrying SfiI sites were detected among the transformants. Hence, provided the target DNA contains at least two recognition sites, SfiI displays all of the hallmarks of a restriction-modification system as opposed to a recombination system in E. coli cells. The properties of the system in vivo match those of the enzyme in vitro. For both restriction in vivo and DNA cleavage in vitro, SfiI operates best with two recognition sites on the same DNA.

摘要

与许多II型限制酶不同,II型限制酶是在4 - 6个碱基对长的单个识别位点切割DNA的二聚体蛋白,而SfiI核酸内切酶是一种四聚体蛋白,在两个位点切割DNA之前,它会与一个拉长序列的两个拷贝结合。因此,SfiI核酸内切酶的作用模式似乎更适合DNA重排而非限制作用。为了阐明其生物学功能,用携带SfiI位点的质粒转化表达SfiI限制修饰系统的大肠杆菌菌株。SfiI系统常常不能限制带有一个SfiI位点的质粒的存活,但带有两个或更多位点的质粒能被有效限制。含有甲基化Sfi位点的质粒不会被限制。在转化体中未检测到携带SfiI位点的质粒发生重排。因此,只要目标DNA含有至少两个识别位点,SfiI在大肠杆菌细胞中就表现出限制修饰系统而非重组系统的所有特征。该系统在体内的特性与酶在体外的特性相匹配。对于体内限制和体外DNA切割,SfiI在同一DNA上有两个识别位点时效果最佳。

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