4.7 Article

The Regulatory Circuit Underlying Downregulation of a Type III Secretion System in Yersinia enterocolitica by Transcription Factor OmpR

期刊

出版社

MDPI
DOI: 10.3390/ijms23094758

关键词

Yersinia enterocolitica; OmpR regulator; T3SS

资金

  1. National Science Center, Poland, OPUS [2011/01/B/NZ6/01845]
  2. University of Warsaw

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This study investigates the role of the transcriptional regulator OmpR in membrane protein expression and secretion in Yersinia enterocolitica. The findings show that OmpR negatively affects the levels of Ysc-Yop proteins, particularly YopD, and represses the expression of yopD. OmpR also has a positive role in the expression of the master regulator of the flagellar-associated T3SS, flhDC.
In a previous study, differential proteomic analysis was used to identify membrane proteins of the human enteropathogen Yersinia enterocolitica, whose levels are influenced by OmpR, the transcriptional regulator in the two-component EnvZ/OmpR system. Interestingly, this analysis demonstrated that at 37 degrees C, OmpR negatively affects the level of over a dozen Ysc-Yop proteins, which constitute a type III secretion system (T3SS) that is essential for the pathogenicity of Y. enterocolitica. Here, we focused our analysis on the role of OmpR in the expression and secretion of Yops (translocators and effectors). Western blotting with anti-Yops antiserum and specific anti-YopD, -YopE and -YopH antibodies, confirmed that the production of Yops is down-regulated by OmpR with the greatest negative effect on YopD. The RT-qPCR analysis demonstrated that, while OmpR had a negligible effect on the activity of regulatory genes virF and yscM1, it highly repressed the expression of yopD. OmpR was found to bind to the promoter of the lcrGVsycD-yopBD operon, suggesting a direct regulatory effect. In addition, we demonstrated that the negative regulatory influence of OmpR on the Ysc-Yop T3SS correlated with its positive role in the expression of flhDC, the master regulator of the flagellar-associated T3SS.

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