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Recombination between directly repeated origins of conjugative transfer cloned in M13 bacteriophage DNA models ligation of the transferred plasmid strand.

机译:克隆在M13噬菌体DNA中的共轭转移的直接重复起点之间的重组可以模拟转移质粒链的连接。

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摘要

When two, directly-repeated copies of the origin of transfer (oriT) of the conjugatively mobilizable, broad host-range plasmid R1162 are cloned into bacteriophage M13mp9 DNA, they undergo recombination in the presence of one of the R1162-encoded proteins required for mobilization [Meyer, R. (1989) J. Bacteriol., 171, 799-806]. Mutations in the outer arm of the inverted repeat within oriT inhibit this recombination. These mutations also affect a late step in transfer. We propose that recombination on the phage DNA models the processing of single-stranded DNA after entry into a recipient cell. The two, directly-repeated oriTs are not equivalent during the recombination reaction, because they are differently affected by the outer-arm mutations. A mutation was also isolated that reduces the specificity of the cleavage site in one of the two oriTs. Together, the results with the mutations suggest that phage recombinants can form only when the first cleavage occurs at one of the two oriTs. This is followed by the resulting free 3' end joining to the 5' end at the cleavage site of the other oriT.
机译:当将可共轭可移动的广泛宿主范围质粒R1162的两个直接重复的转移起点(oriT)复制到噬菌体M13mp9 DNA中时,它们会在存在需要动员的R1162编码蛋白之一的情况下进行重组[Meyer,R。(1989)J.Bacteriol。,171,799-806]。 oriT内反向重复序列外臂的突变抑制了这种重组。这些突变也影响转移的后期步骤。我们建议在噬菌体DNA上的重组模拟进入受体细胞后单链DNA的加工。在重组反应过程中,两个直接重复的oriT不同,因为它们受外臂突变的影响不同。还分离了一个突变,该突变降低了两个oriT之一中切割位点的特异性。在一起,突变的结果表明,只有在两个oriT之一发生第一次切割时,噬菌体重组体才能形成。随后是在另一个oriT的切割位点连接到5'末端的游离3'末端。

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