Molecular architecture of the sheathed polar flagellum in <i>Vibrio alginolyticus</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28973904.
- Also identified by DOI 10.1073/pnas.1712489114 and PMC identifier 5642721.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
<i>Vibrio</i> species are Gram-negative rod-shaped bacteria that are ubiquitous and often highly motile in aqueous environments. <i>Vibrio</i> swimming motility is driven by a polar flagellum covered with a membranous sheath, but this sheathed flagellum is not well understood at the molecular level because of limited structural information. Here, we use <i>Vibrio alginolyticus</i> as a model system to study the sheathed flagellum in intact cells by combining cryoelectron tomography (cryo-ET) and subtomogram analysis with a genetic approach. We reveal striking differences between sheathed and unsheathed flagella in <i>V. alginolyticus</i> cells, including a novel ring-like structure at the bottom of the hook that is associated with major remodeling of the outer membrane and sheath formation. Using mutants defective in flagellar motor components, we defined a <i>Vibrio-</i>specific feature (also known as the T ring) as a distinctive periplasmic structure with 13-fold symmetry. The unique architecture of the T ring provides a static platform to recruit the PomA/B complexes, which are required to generate higher torques for rotation of the sheathed flagellum and fast motility of <i>Vibrio</i> cells. Furthermore, the <i>Vibrio</i> flagellar motor exhibits an intrinsic length variation between the inner and the outer membrane bound complexes, suggesting the outer membrane bound complex can shift slightly along the axial rod during flagellar rotation. Together, our detailed analyses of the polar flagella in intact cells provide insights into unique aspects of the sheathed flagellum and the distinct motility of <i>Vibrio</i> species.
Medical subject headings
- Electron Microscope Tomography
- Flagella
- Sodium
- Vibrio alginolyticus