4.6 Article

Multiple Roles of Flagellar Export Chaperones for Efficient and Robust Flagellar Filament Formation in Salmonella

Journal

FRONTIERS IN MICROBIOLOGY
Volume 12, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2021.756044

Keywords

bacterial flagella; chaperone; flagellar assembly; flagellar filament; protein secretion

Categories

Funding

  1. JSPS KAKENHI [JP26293097, JP19H03182, JP18K14638, JP20K15749, JP18K06159, JP21K06099, JP25000013]
  2. MEXT KAKENHI [JP15H01640, JP20H05532]
  3. JST PRESTO Grant [JPMJPR204B]
  4. JEOL YOKOGUSHI Research Alliance Laboratories of Osaka University

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The flagellar export chaperones, including FlgN, FliS, and FliT, play crucial roles in facilitating the efficient export of essential component proteins for filament formation. Dynamic interactions between these chaperones and the transmembrane export gate protein FlhA are believed to determine the order of substrate export.
FlgN, FliS, and FliT are flagellar export chaperones specific for FlgK/FlgL, FliC, and FliD, respectively, which are essential component proteins for filament formation. These chaperones facilitate the docking of their cognate substrates to a transmembrane export gate protein, FlhA, to facilitate their subsequent unfolding and export by the flagellar type III secretion system (fT3SS). Dynamic interactions of the chaperones with FlhA are thought to determine the substrate export order. To clarify the role of flagellar chaperones in filament assembly, we constructed cells lacking FlgN, FliS, and/or FliT. Removal of either FlgN, FliS, or FliT resulted in leakage of a large amount of unassembled FliC monomers into the culture media, indicating that these chaperones contribute to robust and efficient filament formation. The increment flgN increment fliS increment fliT ( increment NST) cells produced short filaments similarly to the increment fliS mutant. Suppressor mutations of the increment NST cells, which lengthened the filament, were all found in FliC and destabilized the folded structure of FliC monomer. Deletion of FliS inhibited FliC export and filament elongation only after FliC synthesis was complete. We propose that FliS is not involved in the transport of FliC upon onset of filament formation, but FliS-assisted unfolding of FliC by the fT3SS becomes essential for its rapid and efficient export to form a long filament when FliC becomes fully expressed in the cytoplasm.

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