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CmeR作为一种多效性调节因子发挥作用,是空肠弯曲菌在体内实现最佳定殖所必需的。

CmeR functions as a pleiotropic regulator and is required for optimal colonization of Campylobacter jejuni in vivo.

作者信息

Guo Baoqing, Wang Ying, Shi Feng, Barton Yi-Wen, Plummer Paul, Reynolds Donald L, Nettleton Dan, Grinnage-Pulley Tara, Lin Jun, Zhang Qijing

机构信息

Department of Veterinary Microbiology and Preventive Medicine, Iowa State University, Ames, IA 50011, USA.

出版信息

J Bacteriol. 2008 Mar;190(6):1879-90. doi: 10.1128/JB.01796-07. Epub 2008 Jan 4.

Abstract

CmeR functions as a transcriptional repressor modulating the expression of the multidrug efflux pump CmeABC in Campylobacter jejuni. To determine if CmeR also regulates other genes in C. jejuni, we compared the transcriptome of the cmeR mutant with that of the wild-type strain using a DNA microarray. This comparison identified 28 genes that showed a > or = 2-fold change in expression in the cmeR mutant. Independent real-time quantitative reverse transcription-PCR experiments confirmed 27 of the 28 differentially expressed genes. The CmeR-regulated genes encode membrane transporters, proteins involved in C4-dicarboxylate transport and utilization, enzymes for biosynthesis of capsular polysaccharide, and hypothetical proteins with unknown functions. Among the genes whose expression was upregulated in the cmeR mutant, Cj0561c (encoding a putative periplasmic protein) showed the greatest increase in expression. Subsequent experiments demonstrated that this gene is strongly repressed by CmeR. The presence of the known CmeR-binding site, an inverted repeat of TGTAAT, in the promoter region of Cj0561c suggests that CmeR directly inhibits the transcription of Cj0561c. Similar to expression of cmeABC, transcription of Cj0561c is strongly induced by bile compounds, which are normally present in the intestinal tracts of animals. Inactivation of Cj0561c did not affect the susceptibility of C. jejuni to antimicrobial compounds in vitro but reduced the fitness of C. jejuni in chickens. Loss-of-function mutation of cmeR severely reduced the ability of C. jejuni to colonize chickens. Together, these findings indicate that CmeR governs the expression of multiple genes with diverse functions and is required for Campylobacter adaptation in the chicken host.

摘要

CmeR作为一种转录阻遏物,调节空肠弯曲菌中多药外排泵CmeABC的表达。为了确定CmeR是否也调控空肠弯曲菌中的其他基因,我们使用DNA微阵列比较了cmeR突变体与野生型菌株的转录组。这种比较鉴定出28个基因,其在cmeR突变体中的表达变化≥2倍。独立的实时定量逆转录PCR实验证实了28个差异表达基因中的27个。CmeR调控的基因编码膜转运蛋白、参与C4-二羧酸转运和利用的蛋白质、荚膜多糖生物合成的酶以及功能未知的假定蛋白质。在cmeR突变体中表达上调的基因中,Cj0561c(编码一种假定的周质蛋白)的表达增加最为显著。随后的实验表明,该基因受到CmeR的强烈抑制。Cj0561c启动子区域存在已知的CmeR结合位点TGTAAT的反向重复序列,这表明CmeR直接抑制Cj0561c的转录。与cmeABC的表达类似,Cj0561c的转录受到胆汁化合物的强烈诱导,胆汁化合物通常存在于动物肠道中。Cj0561c的失活在体外不影响空肠弯曲菌对抗菌化合物的敏感性,但降低了空肠弯曲菌在鸡体内的适应性。cmeR的功能丧失突变严重降低了空肠弯曲菌在鸡体内定殖的能力。总之,这些发现表明CmeR控制着多个具有不同功能的基因的表达,是空肠弯曲菌在鸡宿主中适应所必需的。

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