Evidence for phenotypic bistability resulting from transcriptional interference of bvgAS in Bordetella bronchiseptica

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Abstract

Bordetella species cause respiratory infections in mammals. Their master regulatory system BvgAS controls expression of at least three distinct phenotypic phases in response to environmental cues. The Bvg+ phase is necessary and sufficient for respiratory infection while the Bvg- phase is required for survival ex vivo. We obtained large colony variants (LCVs) from the lungs of mice infected with B.bronchiseptica strain RBX9, which contains an in-frame deletion mutation in fhaB, encoding filamentous haemagglutinin. RBX9 also yielded LCVs when switched from Bvg- phase conditions to Bvg+ phase conditions in vitro. We determined that LCVs are composed of both Bvg+ and Bvg- phase bacteria and that they result from defective bvgAS positive autoregulation. The LCV phenotype was linked to the presence of a divergent promoter 5′ to bvgAS, suggesting a previously undescribed mechanism of transcriptional interference that, in this case, leads to feedback-based bistability (FBM). Our results also indicate that a small proportion of RBX9 bacteria modulates to the Bvg- phase in vivo. In addition to providing insight into transcriptional interference and FBM, our data provide an example of an in-frame deletion mutation exerting a 'polar' effect on nearby genes. © 2013 John Wiley & Sons Ltd.

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Mason, E., Henderson, M. W., Scheller, E. V., Byrd, M. S., & Cotter, P. A. (2013). Evidence for phenotypic bistability resulting from transcriptional interference of bvgAS in Bordetella bronchiseptica. Molecular Microbiology, 90(4), 716–733. https://doi.org/10.1111/mmi.12394

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