): Changes in mitochondrial morphology and copy number are associated with a variety of human diseases including neurological disorders and some types of cancer. Although the metabolic functions of mitochondria have been extensively studied, the molecular mechanisms that regulate mitochondrial membrane dynamics are not understood. In the current funding period, we characterized two different GTPases in S. cerevisiae that regulate mitochondrial morphology and copy number. Dnm1p is a dynamin-related GTPase that acts on the outer mitochondrial membrane to regulate fission. Fzo1p (fuzzy onions) is a transmembrane GTPase that regulates mitochondrial docking and/or fusion. Both GTPases have human homologues that, when mutated, cause defects in mitochondrial morphology. These findings illustrate how effectively yeast can be used as a tool to study the molecular mechanisms that control mitochondrial dynamics in human cells. During the next funding period, we will continue to study mitochondrial fission and fusion in yeast using a combination of genetic, molecular and biochemical approaches. Specifically, we propose: 1) to identify and characterize SFZ genes/proteins required for mitochondrial fission, 2) to determine the role of Fzo1p self-interactions in mitochondrial fusion, 3) to screen for binding partners that interact with Fzo1p in its GTP-bound state, and 4) to develop an in vitro assay for mitochondrial fusion. The studies we propose will provide new information about the molecular and biochemical basis of mitochondrial fission and fusion in eukaryotic cells.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM053466-07
Application #
6498427
Study Section
Cell Development and Function Integrated Review Group (CDF)
Program Officer
Poodry, Clifton A
Project Start
1996-02-01
Project End
2005-01-31
Budget Start
2002-02-01
Budget End
2003-01-31
Support Year
7
Fiscal Year
2002
Total Cost
$300,000
Indirect Cost
Name
University of Utah
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
City
Salt Lake City
State
UT
Country
United States
Zip Code
84112
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Shaw, Janet M; Winge, Dennis R (2009) Shaping the mitochondrion: mitochondrial biogenesis, dynamics and dysfunction. Conference on Mitochondrial Assembly and Dynamics in Health and Disease. EMBO Rep 10:1301-5

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