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Site-directed mutations in the relaxase operon of RP4.

机译:RP4松弛酶操纵子中的定点突变。

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摘要

Mutations were constructed by site-directed mutagenesis in the relaxase operon of the broad-host-range plasmid RP4. The mutations were constructed in smaller plasmids, recombined into the 60-kb RP4 plasmid, and tested for their ability to transfer. The relaxase operon contains the transfer genes traJ, traH, and traI, which are involved in nicking at the transfer origin to generate the single strand destined to be transferred to the recipient cell. In the first mutant, the C terminus of TraI was truncated, leaving TraH intact. This mutant decreased transfer by approximately 500-fold in Escherichia coli, and the traI mutation could be complemented by a wild-type copy of traI in trans in the donor. The traI mutation similarly decreased transfer between a variety of gram-negative bacteria. A site-specific mutation was made by the polymerase chain reaction-based unique-site mutagenesis procedure to alter the start site of traH. This mutation had no effect on intraspecific E. coli transfer but reduced transfer by up to sevenfold for some gram-negative bacteria. The traH mutation had no effect on plasmid stability. Thus, neither TraH nor the C terminus of TraI is required for conjugative transfer, but both increase mating efficiency in some hosts.
机译:通过在广泛宿主范围的质粒RP4的松弛酶操纵子中进行定点诱变来构建突变。在较小的质粒中构建突变,重组为60 kb RP4质粒,并测试其转移能力。松弛酶操纵子包含转移基因traJ,traH和traI,它们与转移起点形成切口,从而产生注定要转移至受体细胞的单链。在第一个突变体中,TraI的C末端被截短,TraH完整无损。该突变体在大肠杆菌中使转移减少了约500倍,并且traI突变可以由供体中反式的traI野生型拷贝来补充。 traI突变同样减少了各种革兰氏阴性细菌之间的转移。通过基于聚合酶链反应的独特位点诱变程序进行位点特异性突变,以改变traH的起始位点。该突变对种内大肠杆菌的转移没有影响,但是对于某些革兰氏阴性细菌,转移最多减少了七倍。 traH突变对质粒稳定性没有影响。因此,共轭转移既不需要TraH也不需要TraI的C末端,但是在某些宿主中两者都提高了交配效率。

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