Unusual Constriction Zones in the Major Porins OmpU and OmpT from Vibrio cholerae
Unusual Constriction Zones in the Major Porins OmpU and OmpT from Vibrio cholerae
The outer membranes (OM) of many Gram-negative bacteria contain general porins, which form nonspecific, large-diameter channels for the diffusional uptake of small molecules required for cell growth and function. While the porins of Enterobacteriaceae (e.g., E. coli OmpF and OmpC) have been extensively characterized structurally and biochemically, much less is known about their counterparts in Vibrionaceae. Vibrio cholerae, the causative agent of cholera, has two major porins, OmpU and OmpT, for which no structural information is available despite their importance for the bacterium. Here we report high-resolution X-ray crystal structures of V. cholerae OmpU and OmpT complemented with molecular dynamics simulations. While similar overall to other general porins, the channels of OmpU and OmpT have unusual constrictions that create narrower barriers for small-molecule permeation and change the internal electric fields of the channels. Together with electrophysiological and in vitro transport data, our results illuminate small-molecule uptake within the Vibrionaceae.
- University of Cagliari Italy
- University College London United Kingdom
- Newcastle University United Kingdom
- Jacobs University Germany
Models, Molecular, crystal structure, porin, membrane channel, Protein Conformation, Porins, Molecular Dynamics Simulation, electrophysiology, Crystallography, X-Ray, outer membrane protein, Bacterial Proteins, Carbapenems, bile salts, OmpU, Bile salts; Crystal structure; Electrophysiology; Membrane channel; OmpT; OmpU; Outer membrane protein; Porin; Vibrio cholerae; Structural biology; Molecular biology, OmpT, Adhesins, Bacterial, Vibrio cholerae, Deoxycholic Acid
Models, Molecular, crystal structure, porin, membrane channel, Protein Conformation, Porins, Molecular Dynamics Simulation, electrophysiology, Crystallography, X-Ray, outer membrane protein, Bacterial Proteins, Carbapenems, bile salts, OmpU, Bile salts; Crystal structure; Electrophysiology; Membrane channel; OmpT; OmpU; Outer membrane protein; Porin; Vibrio cholerae; Structural biology; Molecular biology, OmpT, Adhesins, Bacterial, Vibrio cholerae, Deoxycholic Acid
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