Lang Kevin S, Johnson Timothy J
University of Minnesota, Department of Veterinary and Biomedical Sciences, St. Paul, MN 55108, United States.
University of Minnesota, Department of Veterinary and Biomedical Sciences, St. Paul, MN 55108, United States.
Plasmid. 2016 Sep-Nov;87-88:17-27. doi: 10.1016/j.plasmid.2016.07.004. Epub 2016 Aug 1.
Conjugation plays an important role in the horizontal movement of DNA between bacterial species and even genera. Large conjugative plasmids in Gram-negative bacteria are associated with multi-drug resistance and have been implicated in the spread of these phenotypes to pathogenic organisms. A/C plasmids often carry genes that confer resistance to multiple classes of antibiotics. Recently, transcription factors were characterized that regulate A/C conjugation. In this work, we expanded the regulon of the negative regulator Acr2. We developed an A/C variant, pARK01, by precise removal of resistance genes carried by the plasmid in order to make it more genetically tractable. Using pARK01, we conducted RNA-Seq and ChAP-Seq experiments to characterize the regulon of Acr2, an H-NS-like protein. We found that Acr2 binds several loci on the plasmid. We showed, in vitro, that Acr2 can bind specific promoter regions directly and identify key amino acids which are important for this binding. This study further characterizes Acr2 and suggests its role in modulating gene expression of multiple plasmid and chromosomal loci.
接合作用在细菌物种甚至属之间的DNA水平转移中起着重要作用。革兰氏阴性菌中的大型接合质粒与多重耐药性相关,并与这些表型向致病生物体的传播有关。A/C质粒通常携带赋予对多种抗生素抗性的基因。最近,已鉴定出调控A/C接合作用的转录因子。在这项研究中,我们扩展了负调控因子Acr2的调控子。我们通过精确去除质粒携带的抗性基因开发了一种A/C变体pARK01,以使其在遗传上更易于操作。使用pARK01,我们进行了RNA测序和染色质免疫沉淀测序实验,以表征类H-NS蛋白Acr2的调控子。我们发现Acr2结合质粒上的几个位点。我们在体外表明,Acr2可以直接结合特定的启动子区域,并鉴定出对这种结合很重要的关键氨基酸。这项研究进一步表征了Acr2,并表明了其在调节多个质粒和染色体位点的基因表达中的作用。