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Visualization of ATP Synthase Dimers in Mitochondria by Electron Cryo-tomography
Published on: September 14, 2014
The AAA-ATPase Yta4/ATAD1 interacts with the mitochondrial divisome to inhibit mitochondrial fission
Jiajia He1,2, Ke Liu1,2, Yifan Wu1
1MOE Key Laboratory for Cellular Dynamics & Center for Advanced Interdisciplinary Science and Biomedicine of IHM, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, China.
Abstract:
Mitochondria are in a constant balance of fusion and fission. Excessive fission or deficient fusion leads to mitochondrial fragmentation, causing mitochondrial dysfunction and physiological disorders. How the cell prevents excessive fission of mitochondria is not well understood. Here, we report that the fission yeast AAA-ATPase Yta4, which is the homolog of budding yeast Msp1 responsible for clearing mistargeted tail-anchored (TA) proteins on mitochondria, plays a critical role in preventing excessive mitochondrial fission. The absence of Yta4 leads to mild mitochondrial fragmentation in a Dnm1-dependent manner but severe mitochondrial fragmentation upon induction of mitochondrial depolarization. Overexpression of Yta4 delocalizes the receptor proteins of Dnm1, i.e., Fis1 (a TA protein) and Mdv1 (the bridging protein between Fis1 and Dnm1), from mitochondria and reduces the localization of Dnm1 to mitochondria. The effect of Yta4 overexpression on Fis1 and Mdv1, but not Dnm1, depends on the ATPase and translocase activities of Yta4. Moreover, Yta4 interacts with Dnm1, Mdv1, and Fis1. In addition, Yta4 competes with Dnm1 for binding Mdv1 and decreases the affinity of Dnm1 for GTP and inhibits Dnm1 assembly in vitro. These findings suggest a model, in which Yta4 inhibits mitochondrial fission by inhibiting the function of the mitochondrial divisome composed of Fis1, Mdv1, and Dnm1. Therefore, the present work reveals an uncharacterized molecular mechanism underlying the inhibition of mitochondrial fission.
Insights
The AAA-ATPase Yta4 prevents excessive mitochondrial fission by inhibiting the mitochondrial divisome. Loss of Yta4 causes fragmentation, while its overexpression prevents it, revealing a novel mechanism.
Area of Science:
- Cell Biology
- Mitochondrial Dynamics
Background:
- Mitochondria maintain function through a balance of fusion and fission.
- Dysregulation of this balance, particularly excessive fission, leads to mitochondrial fragmentation and cellular dysfunction.
- The mechanisms preventing excessive mitochondrial fission remain largely unknown.
Purpose of the Study:
- To investigate the role of the fission yeast AAA-ATPase Yta4 in regulating mitochondrial fission.
- To elucidate the molecular mechanism by which Yta4 prevents excessive mitochondrial fragmentation.
Main Methods:
- Genetic analysis of Yta4 deletion and overexpression in fission yeast.
- Biochemical assays to study protein interactions and enzyme activity.
- Mitochondrial morphology assessment using microscopy.
- In vitro assays to analyze Dnm1 GTPase activity and assembly.
Main Results:
- Absence of Yta4 leads to mitochondrial fragmentation, exacerbated by depolarization.
- Yta4 overexpression delocalizes key mitochondrial fission factors (Fis1, Mdv1) and inhibits Dnm1 localization.
- Yta4's ATPase and translocase activities are crucial for its effects on Fis1 and Mdv1.
- Yta4 directly interacts with Dnm1, Mdv1, and Fis1, competing with Dnm1 for Mdv1 binding and inhibiting Dnm1 assembly.
Conclusions:
- Yta4 acts as a crucial inhibitor of mitochondrial fission.
- Yta4 functions by disrupting the mitochondrial divisome complex (Fis1, Mdv1, Dnm1).
- This study reveals a novel molecular mechanism for controlling mitochondrial fission.
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