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利用生物发光基因报告系统研究大肠杆菌K12中红色依赖型和gam依赖型质粒重组

Use of a bioluminescence gene reporter for the investigation of red-dependent and gam-dependent plasmid recombination in Escherichia coli K12.

作者信息

Nussbaum A, Cohen A

机构信息

Department of Molecular Genetics, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

J Mol Biol. 1988 Sep 20;203(2):391-402. doi: 10.1016/0022-2836(88)90007-1.

Abstract

A plasmid recombination assay, which utilized mutated Vibrio fischeri luciferase genes, cloned in Escherichia coli plasmids was developed. Expression of the recombination product, a functional luxA gene, was assayed by measuring light intensity. This system was used to investigate the effect of E. coli gene functions on lambda Red- and Gam-dependent plasmid recombination. The genetic and physiological requirements for Red- and Gam-dependent plasmid recombination are similar to the conditions which allow synthesis of plasmid linear multimers. Both recombination and linear multimer synthesis are mediated by Red activity in recBrecC and in sbcB mutants and by Gam activity in sbcB and sbcA mutants, but neither recombination nor linear multimer synthesis is mediated by Red or Gam functions in RecBCD+ExoI+ cells. When mediated by Red in sbcB mutants, both recombination and linear multimer synthesis are RecA-independent, and when mediated by Gam, in the same genetic background, both are RecA-dependent. A role for replication in Red- and Gam-mediated plasmid recombination is suggested by the dependence of the recombination activity on DnaB. A model which hypothesizes mutual dependence of linear plasmid multimer synthesis and plasmid recombination by the RecE, RecF and Red pathways is presented. We propose that ends that are produced during this type of replication are recombinogenic in all three pathways and that new rounds of replication are primed by a recombination-dependent invasion of duplex DNA by 3' single strand ends.

摘要

开发了一种质粒重组测定法,该方法利用克隆在大肠杆菌质粒中的突变费氏弧菌荧光素酶基因。通过测量光强度来检测重组产物(一个功能性luxA基因)的表达。该系统用于研究大肠杆菌基因功能对λ Red和Gam依赖性质粒重组的影响。Red和Gam依赖性质粒重组的遗传和生理要求类似于允许合成质粒线性多聚体的条件。重组和线性多聚体合成在recBrecC的sbcB突变体中由Red活性介导,在sbcB和sbcA突变体中由Gam活性介导,但在RecBCD+ExoI+细胞中,重组和线性多聚体合成均不由Red或Gam功能介导。当由sbcB突变体中的Red介导时,重组和线性多聚体合成均不依赖RecA,而在相同遗传背景下由Gam介导时,两者均依赖RecA。重组活性对DnaB的依赖性表明复制在Red和Gam介导的质粒重组中起作用。提出了一个模型,该模型假设线性质粒多聚体合成与RecE、RecF和Red途径的质粒重组相互依赖。我们提出,在这种类型的复制过程中产生的末端在所有三种途径中都是重组原性的,并且新一轮的复制由3'单链末端对双链DNA的重组依赖性侵入引发。

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