Mycoplasma pneumoniae is a member of the class of cell wall-less
prokaryotes Mollicutes, which includes the smallest and simplest free-
living bacteria known to man. Mycoplasmas have limited biosynthetic
capabilities, and many species have resorted to a parasitic lifestyle.
As a consequence, mycoplasmas have a great impact on both public health
and agriculture. M. pneumoniae is a pathogen of the human respiratory
tract and the leading cause of pneumonia in older children and young
adults. Adherence by M. pneumoniae to host cells (cytadherence) is
pivotal to successful colonization and disease. Mycoplasma protein HMW1
is a phase-variable membrane protein that appears to have an accessory
role in cytadherence. HMW1 exhibits an unusual subcellular distribution,
being associated specifically with filamentous cell extensions and
partitioning primarily, but not exclusively, with the cytoskeleton-like
triton shell of M. pneumoniae.
This proposal expands upon preliminary data which indicate that HMW1 is
phosphorylated. The project addresses fundamental questions regarding
the characterization of phosphorylation in vitro and in vivo, as well as
the identification and localization of phosphorylated residues in HMW1.
Standard techniques will be employed to assess incorporation of 32P into
HMW1 during culture and in vitro. HMW1 will be analyzed biochemically
to identify phosphorylated residues and localize those residues within
the primary amino acid sequence. Finally, the phosphorylation of HMW1
will be examined for a correlation with its partitioning characteristics
in Triton X-100 and with mycoplasma cytadherence. The model system
offers a number of attractive features, including a target protein
associated with an identifiable function (cytadherence), as well as the
availability of variants lacking HMW1, of specific antibodies to HMW1,
and of deduced amino acid sequence, that is currently being derived from
the cloned gene for HMW1. The information gained from these studies will
provide the necessary foundation for the long-term objective of defining
the significance of HMW1 phosphorylation to protein function.
Public Health Relevance Statement
Data not available.
NIH Spending Category
No NIH Spending Category available.
Project Terms
Mycoplasma pneumoniaeSDS polyacrylamide gel electrophoresisantibacterial antibodyautoradiographybacterial proteinscell free systemhost organism interactionphosphorusphosphorylationprotein structure function
National Institute of Allergy and Infectious Diseases
CFDA Code
DUNS Number
004315578
UEI
NMJHD63STRC5
Project Start Date
01-January-1993
Project End Date
31-December-1995
Budget Start Date
01-January-1993
Budget End Date
31-December-1993
Project Funding Information for 1993
Total Funding
$81,392
Direct Costs
$56,898
Indirect Costs
$24,494
Year
Funding IC
FY Total Cost by IC
1993
National Institute of Allergy and Infectious Diseases
$81,392
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 1R01AI033396-01
Publications
Publications are associated with projects, but cannot be identified with any particular year of the project or fiscal year of funding. This is due to the continuous and cumulative nature of knowledge generation across the life of a project and the sometimes long and variable publishing timeline. Similarly, for multi-component projects, publications are associated with the parent core project and not with individual sub-projects.
No Publications available for 1R01AI033396-01
Patents
No Patents information available for 1R01AI033396-01
Outcomes
The Project Outcomes shown here are displayed verbatim as submitted by the Principal Investigator (PI) for this award. Any opinions, findings, and conclusions or recommendations expressed are those of the PI and do not necessarily reflect the views of the National Institutes of Health. NIH has not endorsed the content below.
No Outcomes available for 1R01AI033396-01
Clinical Studies
No Clinical Studies information available for 1R01AI033396-01
News and More
Related News Releases
No news release information available for 1R01AI033396-01
History
No Historical information available for 1R01AI033396-01
Similar Projects
No Similar Projects information available for 1R01AI033396-01