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PMID: 23781102 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Helical flow of surface protein required for bacterial gliding motility.

Nakane D, Sato K, Wada H, McBride MJ, Nakayama K

Abstract

Cells of Flavobacterium johnsoniae and of many other members of the phylum Bacteroidetes exhibit rapid gliding motility over surfaces by a unique mechanism. These cells do not have flagella or pili; instead, they rely on a novel motility apparatus composed of Gld and Spr proteins. SprB, a 669-kDa cell-surface adhesin, is required for efficient gliding. SprB was visualized by electron microscopy as thin 150-nm-long filaments extending from the cell surface. Fluorescence microscopy revealed movement of SprB proteins toward the poles of the cell at ∼2 μm/s. The fluorescent signals appeared to migrate around the pole and continue at the same speed toward the opposite pole along an apparent left-handed helical closed loop. Movement of SprB, and of cells, was rapidly and reversibly blocked by the addition of carbonyl cyanide m-chlorophenylhydrazone, which dissipates the proton gradient across the cytoplasmic membrane. In a gliding cell, some of the SprB protein appeared to attach to the substratum. The cell body moved forward and rotated with respect to this point of attachment. Upon reaching the rear of the cell, the attached SprB often was released from the substratum, and apparently recirculated to the front of the cell along a helical path. The results suggest a model for Flavobacterium gliding, supported by mathematical analysis, in which adhesins such as SprB are propelled along a closed helical loop track, generating rotation and translation of the cell body.

Keywords
cell motility continuous track immunofluorescence microscopy left-handed helix proton motive force
MeSH Terms
Adhesins, Bacterial/genetics,physiology Bacterial Adhesion/physiology Flavobacterium/genetics,physiology,ultrastructure Genes, Bacterial Microscopy, Fluorescence Models, Biological Movement/physiology Mutation Proton-Motive Force
Chemicals
Adhesins, Bacterial
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Nakane Daisuke
Department of Molecular Microbiology and Immunology, Graduate School of Biomedical Sciences, Nagasaki University, 852-8588 Nagasaki, Japan.
Sato Keiko
Wada Hirofumi
McBride Mark J
Nakayama Koji
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2013-07-02
Epub
2013-00-18
Pages
11145-50
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC3704026
Subset
IM
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