4.8 Article

MAPL SUMOylation of Drp1 Stabilizes an ER/Mitochondrial Platform Required for Cell Death

Journal

MOLECULAR CELL
Volume 59, Issue 6, Pages 941-955

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2015.08.001

Keywords

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Funding

  1. Canadian Institutes of Health Research (CIHR) [MOP68833]
  2. CCSRI Innovation grant
  3. CIHR [MOP6192, MFE-140925]
  4. JSPS Postdoctoral fellowship for Research Abroad (Japan Society for the Promotion of Science)

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There has been evidence that mitochondrial fragmentation is required for apoptosis, but the molecular links between the machinery regulating dynamics and cell death have been controversial. Indeed, activated BAX and BAK can form functional channels in liposomes, bringing into question the contribution of mitochondrial dynamics in apoptosis. We now demonstrate that the activation of apoptosis triggers MAPL/MUL1-dependent SUMOylation of the fission GTPase Drp1, a process requisite for cytochrome c release. SUMOylated Drp1 functionally stabilizes ER/mitochondrial contact sites that act as hotspots for mitochondrial constriction, calcium flux, cristae remodeling, and cytochrome c release. The loss of MAPL does not alter the activation and assembly of BAX/BAK oligomers, indicating that MAPL is activated downstream of BAX/BAK. This work demonstrates how interorganellar contacts are dynamically regulated through active SUMOylation during apoptosis, creating a stabilized platform that signals cytochrome c release.

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