首页> 美国卫生研究院文献>Journal of Bacteriology >IncN plasmid pKM101 and IncI1 plasmid ColIb-P9 encode homologous antirestriction proteins in their leading regions.
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IncN plasmid pKM101 and IncI1 plasmid ColIb-P9 encode homologous antirestriction proteins in their leading regions.

机译:IncN质粒pKM101和IncI1质粒ColIb-P9在其前导区编码同源抗限制性蛋白。

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摘要

The IncN plasmid pKM101 (a derivative of R46), like the IncI1 plasmid ColIb-P9, carries a gene (ardA, for alleviation of restriction of DNA) encoding an antirestriction function. ardA was located about 4 kb from the origin of transfer, in the region transferred early during bacterial conjugation. The nucleotide sequence of ardA was determined, and an appropriate polypeptide with the predicted molecular weight of about 19,500 was identified in maxicells of Escherichia coli. Comparison of the deduced amino acid sequences of the antirestriction proteins of the unrelated plasmids pKM101 and ColIb (ArdA and Ard, respectively) revealed that these proteins have about 60% identity. Like ColIb Ard, pKM101 ArdA specifically inhibits both the restriction and modification activities of five type I systems of E. coli tested and does not influence type III (EcoP1) restriction or the 5-methylcytosine-specific restriction systems McrA and McrB. However, in contrast to ColIb Ard, pKM101 ArdA is effective against the type II enzyme EcoRI. The Ard proteins are believed to overcome the host restriction barrier during bacterial conjugation. We have also identified two other genes of pKM101, ardR and ardK, which seem to control ardA activity and ardA-mediated lethality, respectively. Our findings suggest that ardR may serve as a genetic switch that determines whether the ardA-encoded antirestriction function is induced during mating.
机译:与IncI1质粒ColIb-P9一样,IncN质粒pKM101(R46的衍生物)带有编码抗限制功能的基因(ardA,用于减轻DNA的限制)。 ardA位于细菌结合过程中较早转移的区域,距转移起点约4 kb。确定了ardA的核苷酸序列,并在大肠埃希氏菌中鉴定出了预测分子量约为19,500的合适多肽。比较无关质粒pKM101和ColIb(分别为ArdA和Ard)的抗限制性蛋白的推导氨基酸序列,发现这些蛋白具有约60%的同一性。像ColIb Ard一样,pKM101 ArdA特异地抑制了五个测试的大肠杆菌I型系统的限制和修饰活性,并且不影响III型(EcoP1)限制或5-甲基胞嘧啶特异性限制系统McrA和McrB。但是,与ColIb Ard相反,pKM101 ArdA对II型酶EcoRI有效。据信,Ard蛋白可以克服细菌结合过程中的宿主限制性障碍。我们还确定了pKM101的另外两个基因ardR和ardK,它们似乎分别控制ardA活性和ardA介导的致死性。我们的发现表明,ardR可能是决定是否在交配过程中诱导ardA编码的抗限制性功能的遗传开关。

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