Quantitative analysis of Borrelia burgdorferi gene expression in naturally (tick) infected mouse strains
- 27 April 2004
- journal article
- Published by Springer Nature in Medical Microbiology and Immunology
- Vol. 194 (1-2) , 81-90
- https://doi.org/10.1007/s00430-004-0218-1
Abstract
Adaptation of Borrelia burgdorferi in the vector and vertebrate host is mediated by mechanisms that regulate differential expression of outer surface lipoproteins (Osps). In this study, real time PCR was applied to quantify tissue-specific expression of four linear plasmid (lp54)-encoded (ospA, zs7.a36, zs7.a66 zs7.a68) and one circular plasmid (cp26)-encoded (ospC) gene from B. burgdorferi sensu stricto, in a natural setting of tick-infected immunodeficient (C.B-17 SCID) and immunocompetent (BALB/c and AKR/OlaHsd) mice for up to 120 days post-infection (p.i.). Early during infection (day 30 p.i.) high numbers of spirochetes were found in the heart and joint, but not the ear and spleen tissues of disease-susceptible SCID mice. In disease-susceptible AKR mice spirochetes colonized the ear and joint tissues, but were undetectable in tissues of disease-resistant BALB/c mice. Later in infection (day 120 p.i.), spirochetes had expanded (~1,000-fold) in all SCID tissues tested but were undetectable in AKR and BALB/c mice. Of the five genes analyzed, only zs7.a36 transcripts were detected in various tissues of all infected mouse strains, though at differing levels, whereas ospC transcripts were only found in tissue specimens of SCID mice. Furthermore, gene expression of ospC and zs7.a36 appears to be differentially regulated in distinct organs of individual mice. In contrast, transcripts for ospA, zs7.a66, and zs7.a68 were not detected in any of the mouse strains, independent of their immune status and/or the severity of their infection/inflammatory responses. Late during infection (day 120 p.i.), transcription of zs7.a36 and ospC was down-regulated in the tissues of SCID mice despite expansion of spirochetes. This type of quantitative analysis may be helpful to further disclose principles of pathogenesis of Lyme borreliosis and to design strategies for its therapeutic treatment.Keywords
This publication has 56 references indexed in Scilit:
- Artificial‐infection protocols allow immunodetection of novel Borrelia burgdorferi antigens suitable as vaccine candidates against Lyme diseaseEuropean Journal of Immunology, 2003
- DNA Microarray Assessment of Putative Borrelia burgdorferi Lipoprotein GenesInfection and Immunity, 2002
- Laboratory Diagnostic Techniques for Patients with Early Lyme Disease Associated with Erythema Migrans: A Comparison of Different TechniquesClinical Infectious Diseases, 2001
- An Analysis of Spirochete Load, Strain, and Pathology in a Model of Tick-Transmitted Lyme BorreliosisVector-Borne and Zoonotic Diseases, 2001
- Fibronectin-binding activity in Borrelia burgdorferiBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease, 1998
- Distinct patterns of protective antibodies are generated against Borrelia burgdorferi in mice experimentally inoculated with high and low doses of antigenImmunology Letters, 1993
- Mode of Inoculation of the Lyme Disease Agent Borrelia burgdorferi Influences Infection and Immune Responses in Inbred Strains of MiceThe Journal of Infectious Diseases, 1993
- Immune sera to individual Borrelia burgdorferi isolates or recombinant OspA thereof protect SCID mice against infection with homologous strains but only partially or not at all against those of different OspA/OspB genotypeVaccine, 1993
- Ixodes (Pholeoixodes) hexagonus, an efficient vector of Borrelia burgdorferi in the laboratoryMedical and Veterinary Entomology, 1991
- The severe combined immunodeficiency (scid) mouse. A laboratory model for the analysis of Lyme arthritis and carditis.The Journal of Experimental Medicine, 1989