YeiE Regulates Motility and Gut Colonization in Salmonella enterica Serotype Typhimurium
Author(s) -
T. L. Westerman,
Michael McClelland,
Johanna R. Elfenbein
Publication year - 2021
Publication title -
mbio
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.562
H-Index - 121
eISSN - 2161-2129
pISSN - 2150-7511
DOI - 10.1128/mbio.03680-20
Subject(s) - flagellum , salmonella enterica , motility , biology , microbiology and biotechnology , salmonella , virulence , mutant , innate immune system , regulator , regulation of gene expression , biofilm , gene , immune system , bacteria , genetics
Regulation of flagellum biosynthesis is a hierarchical process that is tightly controlled to allow for efficient tuning of flagellar expression. Flagellum-mediated motility directs Salmonella enterica serovar Typhimurium toward the epithelial surface to enhance gut colonization, but flagella are potent activators of innate immune signaling, so fine-tuning flagellar expression is necessary for immune avoidance. In this work, we evaluate the role of the LysR transcriptional regulator YeiE in regulating flagellum-mediated motility. We show that yeiE is necessary and sufficient for swimming motility. A ΔyeiE mutant is defective for gut colonization in both the calf ligated ileal loop model and the murine colitis model due to its lack of motility. Expression of flagellar class 2 and 3 but not class 1 genes is reduced in the Δ yeiE mutant. We linked the motility dysregulation of the Δ yeiE mutant to repression of the anti-FlhD 4 C 2 factor STM1697. Together, our results indicate that YeiE promotes virulence by enhancing cell motility, thereby providing a new regulatory control point for flagellar expression in Salmonella Typhimurium.
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