Awardee OrganizationUNIV OF NORTH CAROLINA CHAPEL HILL
Description
Abstract Text
DESCRIPTION (Investigator's abstract): The location, organization and
lateral mobility of nicotinic acetylcholine receptors at the neuromuscular
junction are believed to be controlled by a transmembrane complex of
cytoskeletal and basal lamina elements. Thus far, only a few proteins
which presumably form part of this complex have been identified. To
advance the hypothesis further, we need to identify more of these proteins
and to see how they interact together. This project aims at these
questions through identification and characterization of proteins in the
corresponding complex in electric tissue of electric rays, a muscle-derived
tissue. In one part, the project focuses on 2 proteins already identified,
namely, a 58kD protein and the electric tissue homolog of dystrophin, the
protein of normal muscle which is absent or defective in Duchenne and
Becker muscular dystrophy. Whether these proteins occur in a complex with
actin and other proteins on the postsynaptic membrane will be determined.
In the second part, new proteins will be identified by monoclonal antibody
methods. The immunogen will be material extracted from a more intact
preparation of electric tissue postsynaptic membranes than has been used
heretofore. The antibodies so generated, as well as antibodies already
available against dystrophin and the 58kD protein, will be used to localize
identified proteins relative to accumulations of receptor and to
membrane-associated structural elements in electric tissue and muscle. The
methods will be immunofluorescence and immunoelectron microscopy (thin
section and freeze-etch methods). The identified proteins will be purified
by immunoaffinity methods for determination of their molecular morphologies
by electron microscopy and for identification of copurifying proteins with
which they may interact. In this way, we hope to identify cytoplasmic and
transmembrane components of the transmembrane complex and their shapes.
Equally important, we can expect to identify additional proteins which,
like the 58kD protein and dystrophin, are components of the non-synaptic
sarcolemma as well as the neuromuscular junction. Any of these proteins
could be potentially involved in the action of dystrophin to protect the
sarcolemma against mechanical damage during contraction. This action is
also probably mediated through a transmembrane complex between dystrophin
and extracellular materials. The proposed project thus may have direct
bearing on two problems at once, one of these being relevant to a major
disease.
National Institute of Neurological Disorders and Stroke
CFDA Code
DUNS Number
608195277
UEI
D3LHU66KBLD5
Project Start Date
01-April-1979
Project End Date
31-March-1995
Budget Start Date
01-April-1992
Budget End Date
31-March-1993
Project Funding Information for 1992
Total Funding
$196,338
Direct Costs
$135,874
Indirect Costs
$60,464
Year
Funding IC
FY Total Cost by IC
1992
National Institute of Neurological Disorders and Stroke
$196,338
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 5R01NS015293-12
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 5R01NS015293-12
Patents
No Patents information available for 5R01NS015293-12
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 5R01NS015293-12
Clinical Studies
No Clinical Studies information available for 5R01NS015293-12
News and More
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History
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Similar Projects
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