4.5 Article

FlrA-independent production of flagellar proteins is required for proper flagellation in Shewanella putrefaciens

Journal

MOLECULAR MICROBIOLOGY
Volume 118, Issue 6, Pages 670-682

Publisher

WILEY
DOI: 10.1111/mmi.14993

Keywords

flagella; FleN; FleQ; FlhG; regulation

Funding

  1. Deutsche Forschungsgemeinschaft [EXC2051-ID390713860, TRR 174 P12]
  2. Vallee Foundation

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The assembly and positioning of flagella are controlled by complex spatiotemporal control and mediated through various master regulators. In Shewanella putrefaciens CN-32, the abundance control of a few key components is sufficient for flagella assembly and motor activation, while independent regulators are responsible for flagellar number and positioning.
Flagella are multiprotein complexes whose assembly and positioning require complex spatiotemporal control. Flagellar assembly is thought to be controlled by several transcriptional tiers, which are mediated through various master regulators. Here, we revisited the regulation of flagellar genes in polarly flagellated gammaproteobacteria by the regulators FlrA, RpoN (sigma(54)) and FliA (sigma(28)) in Shewanella putrefaciens CN-32 at the transcript and protein level. We found that a number of regulatory and structural proteins were present in the absence of the main regulators, suggesting that initiation of flagella assembly and motor activation relies on the abundance control of only a few structural key components that are required for the formation of the MS- and C-ring and the flagellar type III secretion system. We identified FlrA-independent promoters driving expression of the regulators of flagellar number and positioning, FlhF and FlhG. Reduction of the gene expression levels from these promoters resulted in the emergence of hyperflagellation. This finding indicates that basal expression is required to adjust the flagellar counter in Shewanella. This is adding a deeper layer to the regulation of flagellar synthesis and assembly.

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