Solving a sticky problem: new genetic approaches to host cell adhesion by the Lyme disease spirochete
- 22 July 2005
- journal article
- review article
- Published by Wiley in Molecular Microbiology
- Vol. 57 (5) , 1182-1195
- https://doi.org/10.1111/j.1365-2958.2005.04759.x
Abstract
Summary: The Lyme disease spirochetes, comprised of at least three closely related species, Borrelia burgdorferi, Borrelia garinii and Borrelia afzelii, are fascinating and enigmatic bacterial pathogens. They are maintained by tick‐mediated transmission between mammalian hosts, usually small rodents. The ability of these bacteria, which have relatively small genomes, to survive and disseminate in both an immunocompetent mammal and in an arthropod vector suggests that they have evolved elegant and indispensable strategies for interacting with their hosts. Recognition of specific mammalian and tick tissues is likely to be essential for successful completion of the enzootic life cycle but, given the historical difficulties in genetic manipulation of these organisms, characterization of factors promoting cell adhesion has until recently largely been confined to either the manipulation of host cells or the analysis of potential bacterial ligands in the form of recombinant proteins. These studies have led to the identification of several mammalian receptors for Lyme disease spirochetes, including glycosaminoglycans, decorin, fibronectin and integrins, as well as a tick receptor for the bacterium, and also candidate cognate bacterial ligands. Recent advances in our ability to genetically manipulate Lyme disease spirochetes, particularly B. burgdorferi, are now providing us with firm evidence that these ligands indeed do promote bacterial adherence to host cells, and with new insights into the roles of these multifacted Borrelia–host cell interactions during mammalian and arthropod infection.Keywords
This publication has 143 references indexed in Scilit:
- Multicomponent Lyme vaccine: Three is not a crowdVaccine, 2005
- BBE02 Disruption Mutants of Borrelia burgdorferi B31 Have a Highly Transformable, Infectious PhenotypeInfection and Immunity, 2004
- IntegrinsCell, 2002
- Lyme DiseaseNew England Journal of Medicine, 2001
- Protection Elicited by Native Outer Membrane Protein Oms66 (p66) against Host-AdaptedBorrelia burgdorferi: Conformational Nature of Bactericidal EpitopesInfection and Immunity, 2000
- Expression and sequence of outer surface protein C among North American isolates ofBorrelia burgdorferiFEMS Microbiology Letters, 1994
- Vitronectin and its receptorsCurrent Opinion in Cell Biology, 1993
- The Biological and Social Phenomenon of Lyme DiseaseScience, 1993
- Integrins: Versatility, modulation, and signaling in cell adhesionCell, 1992
- Lyme DiseaseNew England Journal of Medicine, 1989