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Mdv1p is a WD repeat protein that interacts with the dynamin-related GTPase, Dnm1p, to trigger mitochondrial division
1Section of Molecular and Cellular Biology, University of California Davis, Davis, California 95616, USA.
Abstract:
Mitochondrial fission is mediated by the dynamin-related GTPase, Dnm1p, which assembles on the mitochondrial outer membrane into punctate structures associated with sites of membrane constriction and fission. We have identified additional nuclear genes required for mitochondrial fission, termed MDV (for mitochondrial division). MDV1 encodes a predicted soluble protein, containing a coiled-coil motif and seven COOH-terminal WD repeats. Genetic and two-hybrid analyses indicate that Mdv1p interacts with Dnm1p to mediate mitochondrial fission. In addition, Mdv1p colocalizes with Dnm1p in fission-mediating punctate structures on the mitochondrial outer membrane. Whereas localization of Mdv1p to these structures requires Dnm1p, localization of Mdv1p to mitochondrial membranes does not. This indicates that Mdv1p possesses a Dnm1p-independent mitochondrial targeting signal. Dnm1p-independent targeting of Mdv1p to mitochondria requires MDV2. Our data indicate that MDV2 also functions separately to regulate the assembly of Dnm1p into punctate structures. In contrast, Mdv1p is not required for the assembly of Dnm1p, but Dnm1p-containing punctate structures lacking Mdv1p are not able to complete division. Our studies suggest that mitochondrial fission is a multi-step process in which Mdv2p regulates the assembly of Dnm1p into punctate structures and together with Mdv1p functions later during fission to facilitate Dnm1p-dependent mitochondrial membrane constriction and/or division.
Insights
New genes, MDV1 and MDV2, are crucial for mitochondrial fission. Mdv1p and Mdv2p proteins work with Dnm1p to regulate mitochondrial division, ensuring proper cell function.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Mitochondrial fission is essential for cellular health and is regulated by the dynamin-related GTPase Dnm1p.
- Dnm1p assembles into punctate structures on the mitochondrial outer membrane at sites of constriction.
Purpose of the Study:
- To identify novel nuclear genes involved in mitochondrial fission.
- To elucidate the roles of these genes and their protein products in the Dnm1p-mediated fission process.
Main Methods:
- Genetic screens to identify mitochondrial division (MDV) genes.
- Yeast two-hybrid analysis to study protein interactions.
- Fluorescence microscopy to determine protein localization and colocalization.
Main Results:
- Identified MDV1 and MDV2 as new nuclear genes required for mitochondrial fission.
- MDV1 encodes Mdv1p, which interacts with Dnm1p and colocalizes with it during fission.
- Mdv1p has a Dnm1p-independent mitochondrial targeting signal, dependent on MDV2.
- MDV2 regulates Dnm1p assembly and is essential for Mdv1p targeting.
- Mdv1p is not required for Dnm1p assembly but is essential for completing division.
Conclusions:
- Mitochondrial fission is a multi-step process involving coordinated action of Dnm1p, Mdv1p, and Mdv2p.
- Mdv2p regulates Dnm1p assembly, while Mdv1p and Dnm1p facilitate membrane constriction and division.