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TraG蛋白家族在细菌接合中起耦合作用的遗传证据。

Genetic evidence of a coupling role for the TraG protein family in bacterial conjugation.

作者信息

Cabezón E, Sastre J I, de la Cruz F

机构信息

Departamento de Biología Molecular, Universidad de Cantabria, Santander, Spain.

出版信息

Mol Gen Genet. 1997 Apr 28;254(4):400-6. doi: 10.1007/s004380050432.

Abstract

The ability of conjugative plasmids from six different incompatibility groups to mobilize a set of mobilizable plasmids was examined. The mobilization frequencies of plasmids RSF1010, ColE1, ColE3, and CloDF13 varied over seven orders of magnitude, depending on the helper conjugative plasmid used. Mobilization of CloDF13 was unique in that it did not require TrwB, TraG or TraD (all members of the TraG family) for mobilization by R388, RP4 or F, respectively. CloDF13 itself codes for an essential mobilization protein (MobB) which is also a TraG homolog, only requiring a source of the genes for pilus formation. Besides, CloDF13 was mobilized efficiently by all conjugative plasmids, suggesting that TraG homologs are the primary determinants of the mobilization efficiency of a plasmid, interacting differentially with the various relaxosomes. Previous results indicated that TraG and TrwB were interchangeable for mobilization of RSF1010 and ColE1 by PILw (the pilus system of IncW plasmids) but TraG could not complement conjugation of trwB mutants, suggesting that additional interactions were taking place between TrwB and oriT(R388) that were not essential for mobilization. To further test this hypothesis, we analyzed the mobilization frequencies of ColE1 and RSF1010 by the P, W, and F pili in the presence of alternative TraG homologs. The results obtained indicated that the frequency of mobilization was determined both by the particular TraG-like protein used and by the pilus system. Thus, TraG-like proteins are not generally interchangeable for mobilization. Therefore we suggest that the factors that determine the frequencies of transfer of different MOB regions are the differential interactions of TrwB with pilus and relaxosome.

摘要

研究了来自六个不同不相容群的接合质粒动员一组可移动质粒的能力。质粒RSF1010、ColE1、ColE3和CloDF13的动员频率在七个数量级范围内变化,这取决于所使用的辅助接合质粒。CloDF13的动员具有独特性,即分别由R388、RP4或F进行动员时,它不需要TrwB、TraG或TraD(TraG家族的所有成员)。CloDF13本身编码一种必需的动员蛋白(MobB),它也是TraG的同源物,只需要菌毛形成基因的来源。此外,CloDF13能被所有接合质粒高效动员,这表明TraG同源物是质粒动员效率的主要决定因素,与各种松弛酶体有不同的相互作用。先前的结果表明,TraG和TrwB对于通过PILw(IncW质粒的菌毛系统)动员RSF1010和ColE1是可互换的,但TraG不能补充trwB突变体的接合作用,这表明TrwB与oriT(R388)之间发生了额外的相互作用,而这些相互作用对于动员不是必需的。为了进一步验证这一假设,我们分析了在存在替代TraG同源物的情况下,P菌毛、W菌毛和F菌毛对ColE1和RSF1010的动员频率。获得的结果表明,动员频率既由所使用的特定TraG样蛋白决定,也由菌毛系统决定。因此,TraG样蛋白在动员方面一般不可互换。所以我们认为,决定不同MOB区域转移频率的因素是TrwB与菌毛和松弛酶体的不同相互作用。

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