| Literature DB >> 22994496 |
Nyles W Charon1, Andrew Cockburn, Chunhao Li, Jun Liu, Kelly A Miller, Michael R Miller, Md A Motaleb, Charles W Wolgemuth.
Abstract
Spirochete motility is enigmatic: It differs from the motility of most other bacteria in that the entire bacterium is involved in translocation in the absence of external appendages. Using the Lyme disease spirochete Borrelia burgdorferi (Bb) as a model system, we explore the current research on spirochete motility and chemotaxis. Bb has periplasmic flagella (PFs) subterminally attached to each end of the protoplasmic cell cylinder, and surrounding the cell is an outer membrane. These internal helix-shaped PFs allow the spirochete to swim by generating backward-moving waves by rotation. Exciting advances using cryoelectron tomography are presented with respect to in situ analysis of cell, PF, and motor structure. In addition, advances in the dynamics of motility, chemotaxis, gene regulation, and the role of motility and chemotaxis in the life cycle of Bb are summarized. The results indicate that the motility paradigms of flagellated bacteria do not apply to these unique bacteria.Entities:
Mesh:
Year: 2012 PMID: 22994496 PMCID: PMC3771095 DOI: 10.1146/annurev-micro-092611-150145
Source DB: PubMed Journal: Annu Rev Microbiol ISSN: 0066-4227 Impact factor: 15.500