Loss of Yme1L perturbates mitochondrial dynamics

Y Ruan1, H Li, K Zhang

  • 1College of Life Sciences, Wuhan University, Hubei 430072, China.

Cell Death & Disease
|November 2, 2013
PubMed

Insights

Yme1L protease loss causes mitochondrial fragmentation by stabilizing long-form OPA1 and increasing fission factors. This clarifies Yme1L

Area of Science:

  • Mitochondrial biology
  • Cellular dynamics
  • Protease function

Background:

  • Yme1L is an AAA protease in the mitochondrial inner membrane.
  • Its role in mammalian mitochondrial function remains unclear.
  • Endogenous Yme1L localizes to punctate mitochondrial structures.

Purpose of the Study:

  • To elucidate the regulatory role of Yme1L in mammalian mitochondrial morphology and dynamics.
  • To investigate the mechanisms underlying Yme1L-mediated mitochondrial fragmentation.

Main Methods:

  • Utilized mouse embryonic fibroblast (MEF) cells with Yme1L loss-of-function (knockdown and knockout).
  • Analyzed mitochondrial morphology, fusion/fission rates, and protein processing (OPA1).
  • Investigated the involvement of mitochondrial dynamics proteins (Mff, Drp1) and SLP-2.

Main Results:

  • Loss of Yme1L leads to mitochondrial fragmentation, increased 'kiss-and-run' fusion, and altered fission/fusion rates.
  • Fragmentation is independent of OPA1 S1/S2 processing but linked to OPA1 long-form (L-OPA1) stabilization.
  • Yme1L knockdown increases Mff and Drp1 recruitment, promoting fission; inhibiting Drp1 or Mff rescues fragmentation.

Conclusions:

  • Yme1L regulates mitochondrial morphology through mechanisms involving L-OPA1 stability and fission factor dynamics.
  • Yme1L's function is crucial for maintaining normal mitochondrial structure and dynamics.
  • This study clarifies Yme1L's role in mitochondrial morphology regulation.

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