Flagellin outer domain dimerization modulates motility in pathogenic and soil bacteria from viscous environments

Author:

Kreutzberger Mark A. B.,Sobe Richard C.,Sauder Amber B.,Chatterjee Sharanya,Peña Alejandro,Wang Fengbin,Giron Jorge A.,Kiessling VolkerORCID,Costa Tiago R. D.ORCID,Conticello Vincent P.ORCID,Frankel GadORCID,Kendall Melissa M.,Scharf Birgit E.,Egelman Edward H.ORCID

Abstract

AbstractFlagellar filaments function as the propellers of the bacterial flagellum and their supercoiling is key to motility. The outer domains on the surface of the filament are non-critical for motility in many bacteria and their structures and functions are not conserved. Here, we show the atomic cryo-electron microscopy structures for flagellar filaments from enterohemorrhagic Escherichia coli O157:H7, enteropathogenic E. coli O127:H6, Achromobacter, and Sinorhizobium meliloti, where the outer domains dimerize or tetramerize to form either a sheath or a screw-like surface. These dimers are formed by 180° rotations of half of the outer domains. The outer domain sheath (ODS) plays a role in bacterial motility by stabilizing an intermediate waveform and prolonging the tumbling of E. coli cells. Bacteria with these ODS and screw-like flagellar filaments are commonly found in soil and human intestinal environments of relatively high viscosity suggesting a role for the dimerization in these environments.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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