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Characterization of the Escherichia coli F factor traY gene product and its binding sites.

机译:大肠杆菌F因子traY基因产物及其结合位点的表征。

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摘要

The traY gene product (TraYp) from the Escherichia coli F factor has previously been purified and shown to bind a DNA fragment containing the F plasmid oriT region (E. E. Lahue and S. W. Matson, J. Bacteriol. 172:1385-1391, 1990). To determine the precise nucleotide sequence bound by TraYp, DNase I footprinting was performed. The TraYp-binding site is near, but not coincident with, the site that is nicked to initiate conjugative DNA transfer. In addition, a second TraYp binding site, which is coincident with the mRNA start site at the traYI promoter, is described. The Kd for each binding site was determined by a gel mobility shift assay. TraYp exhibits a fivefold higher affinity for the oriT binding site compared with the traYI promoter binding site. Hydrodynamic studies were performed to show that TraYp is a monomer in solution under the conditions used in DNA binding assays. Early genetic experiments implicated the traY gene product in the site- and strand-specific endonuclease activity that nicks at oriT (R. Everett and N. Willetts, J. Mol. Biol. 136:129-150, 1980; S. McIntire and N. Willetts, Mol. Gen. Genet. 178:165-172, 1980). As this activity has recently been ascribed to helicase I, it was of interest to see whether TraYp had any effect on this reaction. Addition of TraYp to nicking reactions catalyzed by helicase I showed no effect on the rate or efficiency of oriT nicking. Roles for TraYp in conjugative DNA transfer and a possible mode of binding to DNA are discussed.
机译:先前已纯化了来自大肠杆菌F因子的traY基因产物(TraYp),并显示其结合了包含F质粒oriT区域的DNA片段(E.E.Lahue和S.W.Matson,J.Bacteriol.172:1385-1391,1990)。为了确定与TraYp结合的精确核苷酸序列,进行了DNase I足迹分析。 TraYp结合位点靠近但不与有切口起始共轭DNA转移的位点重合。另外,描述了第二个TraYp结合位点,其与traYI启动子处的mRNA起始位点一致。通过凝胶迁移率变动测定法确定每个结合位点的Kd。与traYI启动子结合位点相比,TraYp对oriT结合位点的亲和力高五倍。进行了流体动力学研究,表明在DNA结合测定中使用的条件下,TraYp是溶液中的单体。早期的基因实验将traY基因产物牵涉到在oriT处切口的位点和链特异性核酸内切酶活性(R.Everett和N.Willetts,J.Mol.Biol.136:129-150,1980; S.McIntire和N Willetts,Mol.Gen.Genet.178:165-172,1980)。由于该活性最近被归因于解旋酶I,因此有兴趣观察TraYp是否对该反应有任何影响。在解旋酶I催化的切刻反应中添加TraYp对oriT切刻的速率或效率没有影响。讨论了TraYp在共轭DNA转移中的作用以及与DNA结合的可能模式。

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