Wilkins B M, Thomas A T
Department of Genetics, University of Leicester, Leicester LE1 7RH, UK.
Mol Microbiol. 2000 Nov;38(3):650-7. doi: 10.1046/j.1365-2958.2000.02164.x.
The ColIb-P9 (IncI1)-encoded conjugation system supports transfer of the plasmid T-strand plus hundreds of molecules of the Sog polypeptides determined by the plasmid primase gene. Here, we report that Sog primase is abundantly donated to the recipient cell from cells carrying a non-transferable ColIb plasmid deleted of the nic site essential for DNA export. Such DNA-independent secretion of Sog primase is typical of authentic conjugation, both in being blocked when the recipient cell specifies the entry exclusion function of ColIb and in requiring the thin I1 pilus encoded by the ColIb pil system under the mating conditions used. It is proposed that Sog polypeptides form a complex with the ColIb T-strand during conjugation and aid DNA transport through processive secretion of the proteins into the recipient cell. Functional and genetic relationships between the ColIb conjugation system and other type IV secretion pathways are discussed.
由ColIb - P9(IncI1)编码的接合系统支持质粒T链以及由质粒引发酶基因决定的数百个Sog多肽分子的转移。在此,我们报告,对于携带缺失DNA输出所必需的nic位点的非转移性ColIb质粒的细胞,Sog引发酶会大量转移至受体细胞。Sog引发酶的这种不依赖DNA的分泌是真正接合的典型特征,在受体细胞具有ColIb的进入排斥功能时会被阻断,并且在所用的交配条件下需要由ColIb菌毛系统编码的细I1菌毛。有人提出,Sog多肽在接合过程中与ColIb T链形成复合物,并通过将蛋白质持续分泌到受体细胞中来协助DNA运输。本文还讨论了ColIb接合系统与其他IV型分泌途径之间的功能和遗传关系。