首页> 外文期刊>Journal of bacteriology >Location of functional regions of the Escherichia coli RecA protein by DNA sequence analysis of RecA protease-constitutive mutants.
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Location of functional regions of the Escherichia coli RecA protein by DNA sequence analysis of RecA protease-constitutive mutants.

机译:通过RecA蛋白酶组成型突变体的DNA序列分析确定大肠杆菌RecA蛋白功能区域的位置。

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In previous work (E. S. Tessman and P. K. Peterson, J. Bacteriol. 163:677-687 and 688-695, 1985), we isolated many novel protease-constitutive (Prtc) recA mutants, i.e., mutants in which the RecA protein was always in the protease state without the usual need for DNA damage to activate it. Most Prtc mutants were recombinase positive and were designated Prtc Rec+; only a few Prtc mutants were recombinase negative, and those were designated Prtc Rec-. We report changes in DNA sequence of the recA gene for several of these mutants. The mutational changes clustered at three regions on the linear RecA polypeptide. Region 1 includes amino acid residues 25 through 39, region 2 includes amino acid residues 157 through 184, and region 3 includes amino acid residues 298 through 301. The in vivo response of these Prtc mutants to different effectors suggests that the RecA effector-binding sites have been altered. In particular we propose that the mutations may define single-stranded DNA- and nucleoside triphosphate-binding domains of RecA, that polypeptide regions 1 and 3 comprise part of the single-stranded DNA-binding domain, and that polypeptide regions 2 and 3 comprise part of the nucleoside triphosphate-binding domain. The overlapping of single-stranded DNA- and nucleoside triphosphate-binding domains in region 3 can explain previously known complex allosteric effects. Each of four Prtc Rec- mutants sequenced was found to contain a single amino acid change, showing that the change of just one amino acid can affect both the protease and recombinase activities and indicating that the functional domains for these two activities of RecA overlap. A recA promoter-down mutation was isolated by its ability to suppress the RecA protease activity of one of our strong Prtc mutants.
机译:在以前的工作中(ES Tessman和PK Peterson,J。Bacteriol。163:677-687和688-695,1985),我们分离了许多新颖的蛋白酶组成(Prtc)recA突变体,即其中RecA蛋白始终存在的突变体蛋白酶状态下,通常不需要DNA损伤即可激活它。大多数Prtc突变体是重组酶阳性的,并命名为Prtc Rec +。只有少数Prtc突变体重组酶阴性,这些被命名为Prtc Rec-。我们报告了其中一些突变体的recA基因的DNA序列变化。突变变化聚集在线性RecA多肽的三个区域。区域1包含25至39个氨基酸残基,区域2包含157至184个氨基酸残基,区域3包含298至301个氨基酸残基。这些Prtc突变体对不同效应子的体内反应提示RecA效应子结合位点已被更改。特别是,我们建议突变可以定义RecA的单链DNA和核苷三磷酸结合结构域,多肽区域1和3构成单链DNA结合结构域的一部分,多肽区域2和3构成部分RecA。核苷三磷酸结合域的结构。在区域3中单链DNA和核苷三磷酸结合域的重叠可以解释以前已知的复杂变构效应。发现已测序的四个Prtc Rec-突变体中的每一个都包含一个氨基酸变化,表明仅一个氨基酸的变化就可以影响蛋白酶和重组酶的活性,并表明RecA的这两个活性的功能域重叠。通过抑制我们强大的Prtc突变体之一的RecA蛋白酶活性,分离了recA启动子下降突变。

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