MEDIUM CHAIN ACYL-COA DEHYDROGENASE GENE EXPRESSION
Project Number5R29DK045416-04
Contact PI/Project LeaderKELLY, DANIEL PATRICK
Awardee OrganizationWASHINGTON UNIVERSITY
Description
Abstract Text
Medium-chain acyl-CoA dehydrogenase (MCAD,EC 1.3.99.3) is a mitochondrial
flavoenzyme which catalyzes the initial, rate-limiting, reaction in fatty
acid beta-oxidation. Inherited MCAD deficiency, a cause of fasting coma,
liver dysfunction, and sudden death in childhood, reflects the importance
of this enzyme in energy metabolism. The MCAD gene is highly regulated,
in parallel with fatty acid oxidation rates, among tissues and during
development. Elucidation of the mechanisms involved in the regulation of
the MCAD gene will provide insights relevant to MCAD deficiency and to
the understanding of mechanisms involved in the regulation of expression
of nuclear genes encoding mitochondrial enzymes involved in fatty acid
metabolism under normal conditions and in a variety of physiologic and
disease states. The major goals of this proposal include the structural
and functional characterization of the promoter and upstream cis-acting
regulatory regions of the human MCAD gene including identification of the
elements involved in tissue-specific, developmental, and retinoic
acid-responsive transcriptional regulation. Ultimately, we hope to
identify regulatory sequences and transacting regulatory DNA binding
proteins involved in coordinate control of genes encoding metabolic
enzymes and mitochondrial proteins. The promoter region and regulatory
elements will be characterized by transfecting a variety of chimeric
plasmids containing varying lengths of MCAD gene 5'-flanking DNA fused to
the bacterial chloramphenicol acetyltransferase (CAT) gene into mammalian
cells derived from several tissues with differing MCAD mRNA expression
levels. Retinoic acid response elements will be localized by identifying
the regulatory sequences of the MCAD gene which confer retinoic
acid-responsive transcriptional activation to the MCAD-CAT plasmids in
mammalian cells in culture. The regulatory sequences will be compared to
sequences of known regulatory elements in other genes, particularly those
encoding enzymes involved in metabolism. The regulatory elements will be
further characterized by performing DNA-nuclear protein binding assays.
Ultimately, the trans-acting regulatory proteins involved in the
transcriptional regulation of the MCAD gene will be identified by
isolating and characterizing their cDNAs. The role of the regulatory
elements in developmental and tissue-specific regulation of the MCAD gene
in vivo will be evaluated by employing a transgenic mouse system.
National Institute of Diabetes and Digestive and Kidney Diseases
CFDA Code
DUNS Number
068552207
UEI
L6NFUM28LQM5
Project Start Date
30-September-1992
Project End Date
31-May-1996
Budget Start Date
30-September-1995
Budget End Date
31-May-1996
Project Funding Information for 1995
Total Funding
$112,518
Direct Costs
$72,827
Indirect Costs
$39,691
Year
Funding IC
FY Total Cost by IC
1995
National Institute of Diabetes and Digestive and Kidney Diseases
$112,518
Year
Funding IC
FY Total Cost by IC
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