Bacterial flagellin-specific chaperone FliS interacts with anti-sigma factor FlgM

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Publication Type pre-print
School or College College of Science
Department Biology
Creator Hughes, Kelly T.
Other Author Galeva, Anna; Moroz, Natalia; Yoon, Young-Ho; Samatey, Fadel A.; Kostyukova, Alla S.
Title Bacterial flagellin-specific chaperone FliS interacts with anti-sigma factor FlgM
Date 2014-01-01
Description Flagella are extracellular organelles that propel bacteria. Each flagellum consists of a basal body, a hook, and a filament. The major protein of the filament is flagellin. To prevent premature polymerization of newly synthesized flagellin molecules, FliS, the flagellin-specific chaperone, binds flagellin and facilitates its export. Induction of flagellin gene expression coincides with secretion of FlgM. The role of FlgM is to inhibit FliA (Ơ28), a flagellar-specific RNA polymerase responsible for flagellin transcription. To prevent premature polymerization of newly synthesized flagellin molecules, FliS, the flagellin-specific chaperone, binds flagellin and facilitates its export. In this study, the interaction between FlgM and FliS from Salmonella typhimurium was characterized using gel-shift, intrinsic tryptophan fluorescence, circular dichroism, limited proteolysis and cross-linking. We have demonstrated that: i) FliS and FlgM interact specifically, forming a 1:1 complex; ii) The FliS binding site on FlgM is proximal to or even overlaps with the binding site for FliA; and iii) FliA competes with FliS for FlgM binding. We suggest that FliS binding by FlgM helps to stabilize and preserve FlgM in the cell until FliA is expressed.
Type Text
Publisher American Society for Microbiology
Volume 196
Issue 6
First Page 1215
Last Page 1221
Language eng
Bibliographic Citation Galeva, A., Moroz, N., Yoon, Y.-H., Hughes, K. T., Samatey, F. A., & Kostyukova, A. S. (2014). Bacterial flagellin-specific chaperone FliS interacts with anti-sigma factor FlgM. Journal of Bacteriology, 196(6), 1215-221.
Rights Management (c)American Society for Microbiology ; doi: 10.1128/JB.01278-13.
Format Medium application/pdf
Format Extent 2,239,983 bytes
Identifier uspace,18515
ARK ark:/87278/s6rc0dqh
Setname ir_uspace
ID 712837
Reference URL https://collections.lib.utah.edu/ark:/87278/s6rc0dqh
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