Gunton James E, Ussher John E R, Rooker Michelle M, Wetsch Nicole M, Alonso Guillermina, Taylor Diane E
Department of Medical Microbiology and Immunology, 1-63 Medical Sciences Building, University of Alberta, Edmonton, Alberta, Canada T6G 2R3.
Plasmid. 2008 Mar;59(2):86-101. doi: 10.1016/j.plasmid.2007.11.004. Epub 2008 Jan 14.
Conjugative plasmids have evolved entry exclusion mechanisms to inhibit redundant DNA transfer from donor cells into recipients harboring isogenic or closely related plasmids. This exclusion phenomenon has been documented in the incompatibility H group (IncH) plasmid R27. A cosmid library representing the majority of the large (180kb) R27 plasmid was transformed into recipient cells and a conjugation assay identified that an operon located in the conjugative transfer region 2 (Tra2) of R27, the Z operon, mediated entry exclusion in the IncH plasmid. Reverse-transcriptase analysis revealed that the Z operon is comprised of four genes, 015, eexB, 017, and eexA. Sub-cloning of the individual genes located within the Z operon and subsequent screening for the entry exclusion phenotype determined that two genes, eexA and eexB, independently inhibit the entry of IncH-related plasmids. Bacterial fractionation studies predominantly localized the EexA protein to the cytoplasmic membrane, and the EexB protein to the outer membrane. Recipient cells expressing EexA and EexB were unable to exclude the entry of R27 plasmids harboring mutations within the IncH entry exclusion genes eexA and eexB. The IncH entry exclusion proteins EexA and EexB likely prevent redundant plasmid transfer by interaction with one another.
接合质粒已经进化出了进入排斥机制,以抑制冗余DNA从供体细胞转移到携带同基因或密切相关质粒的受体细胞中。这种排斥现象已在不相容性H组(IncH)质粒R27中得到记录。一个代表大部分大型(180kb)R27质粒的黏粒文库被转化到受体细胞中,接合试验确定位于R27接合转移区域2(Tra2)的一个操纵子,即Z操纵子,介导了IncH质粒中的进入排斥。逆转录酶分析表明,Z操纵子由四个基因组成,即015、eexB、017和eexA。对Z操纵子内各个基因进行亚克隆,并随后筛选进入排斥表型,确定eexA和eexB这两个基因独立抑制IncH相关质粒的进入。细菌分级分离研究主要将EexA蛋白定位到细胞质膜,将EexB蛋白定位到外膜。表达EexA和EexB的受体细胞无法排斥携带IncH进入排斥基因eexA和eexB突变的R27质粒的进入。IncH进入排斥蛋白EexA和EexB可能通过相互作用来防止冗余质粒转移。