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.

Plos Biology
|August 17, 2023
PubMed

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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