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霍乱弧菌 trh 基因在体外与 III 型分泌系统基因由 VttR(A)/VttR(B)共同调控,但不影响 Caco2-BBE 细胞的细胞毒性。

The Vibrio cholerae trh gene is coordinately regulated in vitro with type III secretion system genes by VttR(A)/VttR(B) but does not contribute to Caco2-BBE cell cytotoxicity.

机构信息

Department of Microbiology and Immunology, University of Rochester School of Medicine and Dentistry, Rochester, New York, USA.

出版信息

Infect Immun. 2012 Dec;80(12):4444-55. doi: 10.1128/IAI.00832-12. Epub 2012 Oct 8.

Abstract

Numerous virulence factors have been associated with pathogenic non-O1/non-O139 serogroup strains of Vibrio cholerae. Among them are the thermostable direct hemolysin (TDH) and the TDH-related hemolysin (TRH), which share amino acid similarities to the TDH and TRH proteins of Vibrio parahaemolyticus, where they have been shown to contribute to pathogenesis. Although TDH and TRH homologs can be encoded on extrachromosomal elements in V. cholerae, type III secretion system (T3SS)-positive strains, such as AM-19226, carry a copy of trh within the T3SS genomic island. Transcriptional fusion analysis showed that in strain AM-19226, trh expression is regulated in a bile-dependent manner by a family of transmembrane transcriptional regulators that includes VttR(A), VttR(B), and ToxR. Genes encoding T3SS structural components are expressed under similar conditions, suggesting that within the T3SS genomic island, genes encoding proteins unrelated to the T3SS and loci involved in T3SS synthesis are coregulated. Despite similar in vitro expression patterns, however, TRH is not required for AM-19226 to colonize the infant mouse intestine, nor does it contribute to bile-mediated cytotoxicity when strain AM-19226 is cocultured with the mammalian cell line Caco2-BBE. Instead, we found that a functional T3SS is essential for AM-19226 to induce bile-mediated cytotoxicity in vitro. Collectively, the results are consistent with a more minor role for the V. cholerae TRH in T3SS-positive strains compared to the functions attributed to the V. parahaemolyticus TDH and TRH proteins.

摘要

许多毒力因子与致病性非 O1/非 O139 血清群霍乱弧菌菌株有关。其中包括耐热直接溶血素(TDH)和 TDH 相关溶血素(TRH),它们与副溶血性弧菌的 TDH 和 TRH 蛋白具有氨基酸相似性,并且已经证明它们有助于发病机制。尽管 TDH 和 TRH 同源物可以在霍乱弧菌的染色体外元件上编码,但 T3SS 阳性菌株(如 AM-19226)在 T3SS 基因组岛中携带 trh 的副本。转录融合分析表明,在菌株 AM-19226 中,trh 表达受一系列跨膜转录调节因子的调节,这些调节因子包括 VttR(A)、VttR(B)和 ToxR。编码 T3SS 结构成分的基因在类似的条件下表达,这表明在 T3SS 基因组岛上,编码与 T3SS 无关的蛋白质的基因和参与 T3SS 合成的基因位是共调控的。然而,尽管具有相似的体外表达模式,但 TRH 对于 AM-19226 在婴儿小鼠肠道中的定植不是必需的,当菌株 AM-19226 与哺乳动物细胞系 Caco2-BBE 共培养时,TRH 也不会导致胆汁介导的细胞毒性。相反,我们发现功能性 T3SS 对于 AM-19226 在体外诱导胆汁介导的细胞毒性是必不可少的。总的来说,结果与副溶血性弧菌的 TDH 和 TRH 蛋白所具有的功能相比,霍乱弧菌 TRH 在 T3SS 阳性菌株中的作用较小。

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