The overall objectives of this renewal application are to delineate and characterize specific surface proteins of the mollicute Mycoplasma fermentans that are associated with pathogenic interactions with the host, and to understand underlying genetic features of this small prokaryotic pathogen that may provide adaptive diversity and variation. Implicated as a causal agent of a fatal acute respiratory distress syndrome, and an uncommonly prevalent agent isolated from patients with AIDS, M. fermentans plays a potentially important role in human disease either as a primary or contributing pathogen. Factors modulating several host cell functions have been associated with M. fermentans. Surface membrane lipoproteins displaying multiple forms of variation in surface structure and expression have been documented and a large(>25 kb), repetitive chromosomal element (REP) that contains multiple contiguous ORFs encoding expressed lipoproteins and other putative virulence factors has been recently identified. Efforts will be focused on characterizing this unique genetic element and its likely role in genetic variation and surface diversity. Lipoproteins are also potent immunomodulatory molecules. Recently, a short peptide sequence of a mitogenic lipopeptide purified from M. fermentans has been determined. It is intended to analyze the gene structure corresponding to this lipopeptide. Using standard molecular biology and immunobiochemical procedures, the proposed project will (i) characterize the primary gene product of the bioactive lipopeptide, (ii) characterize clones containing complete REPs, (iii) compare the chromosomal distribution of REPs among the strains, and (iv) identify variants of a REP-encoded surface lipoprotein. Overall, these studies should provide new knowledge on bioactive lipid compounds and genetic variation, both potentially crucial for the adaptation and pathogenicity of this organism.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI032219-09
Application #
6169692
Study Section
Special Emphasis Panel (ZRG5-MBC-1 (04))
Program Officer
Taylor, Christopher E,
Project Start
1992-01-01
Project End
2002-06-30
Budget Start
2000-07-01
Budget End
2002-06-30
Support Year
9
Fiscal Year
2000
Total Cost
$240,081
Indirect Cost
Name
University of Missouri-Columbia
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
112205955
City
Columbia
State
MO
Country
United States
Zip Code
65211
Roske, K; Calcutt, M J; Wise, K S (2004) The Mycoplasma fermentans prophage phiMFV1: genome organization, mobility and variable expression of an encoded surface protein. Mol Microbiol 52:1703-20
Davis, Kelley L; Wise, Kim S (2002) Site-specific proteolysis of the MALP-404 lipoprotein determines the release of a soluble selective lipoprotein-associated motif-containing fragment and alteration of the surface phenotype of Mycoplasma fermentans. Infect Immun 70:1129-35
Calcutt, Michael J; Lewis, Michelle S; Wise, Kim S (2002) Molecular genetic analysis of ICEF, an integrative conjugal element that is present as a repetitive sequence in the chromosome of Mycoplasma fermentans PG18. J Bacteriol 184:6929-41
Leigh, Spencer A; Wise, Kim S (2002) Identification and functional mapping of the Mycoplasma fermentans P29 adhesin. Infect Immun 70:4925-35
Zhang, Q; Wise, K S (2001) Coupled phase-variable expression and epitope masking of selective surface lipoproteins increase surface phenotypic diversity in Mycoplasma hominis. Infect Immun 69:5177-81
Calcutt, M J; Kim, M F; Karpas, A B et al. (1999) Differential posttranslational processing confers intraspecies variation of a major surface lipoprotein and a macrophage-activating lipopeptide of Mycoplasma fermentans. Infect Immun 67:760-71
Calcutt, M J; Lavrrar, J L; Wise, K S (1999) IS1630 of Mycoplasma fermentans, a novel IS30-type insertion element that targets and duplicates inverted repeats of variable length and sequence during insertion. J Bacteriol 181:7597-607
Theiss, P; Wise, K S (1997) Localized frameshift mutation generates selective, high-frequency phase variation of a surface lipoprotein encoded by a mycoplasma ABC transporter operon. J Bacteriol 179:4013-22
Hoffman, R W; O'Sullivan, F X; Schafermeyer, K R et al. (1997) Mycoplasma infection and rheumatoid arthritis: analysis of their relationship using immunoblotting and an ultrasensitive polymerase chain reaction detection method. Arthritis Rheum 40:1219-28
Zhang, Q; Wise, K S (1996) Molecular basis of size and antigenic variation of a Mycoplasma hominis adhesin encoded by divergent vaa genes. Infect Immun 64:2737-44

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