Tumor suppressor KIF1Bβ regulates mitochondrial apoptosis in collaboration with YME1L1

Koji Ando1,2, Tomoki Yokochi1, Akira Mukai1

  • 1Division of Biochemistry and Innovative Cancer Therapeutics, Chiba Cancer Center Research Institute, Chiba, Japan.

Insights

Tumor suppressor KIF1Bβ destabilizes mitochondria by interacting with YME1L1, promoting apoptosis. This KIF1Bβ/YME1L1/OPA1 pathway is crucial for cell death and may be implicated in cancer and neurodegeneration.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cancer Research

Background:

  • KIF1Bβ is a tumor suppressor involved in apoptosis, particularly in neural crest-derived tumors.
  • Its precise molecular functions beyond the NGF pathway remain largely uncharacterized.
  • Mitochondrial morphology is critical for cell survival and programmed cell death.

Purpose of the Study:

  • To elucidate the unexplored molecular functions of KIF1Bβ.
  • To investigate the role of KIF1Bβ in mitochondrial dynamics and apoptosis.
  • To identify interacting partners of KIF1Bβ involved in these processes.

Main Methods:

  • Identified KIF1Bβ interacting partners using co-immunoprecipitation.
  • Assessed the effect of KIF1Bβ and YME1L1 on mitochondrial morphology and OPA1 cleavage.
  • Utilized overexpression and knockdown (siRNA) studies in cell models.
  • Correlated protein expression with patient prognosis in neuroblastoma.

Main Results:

  • KIF1Bβ interacts with the mitochondrial metalloprotease YME1L1.
  • This interaction activates YME1L1, leading to OPA1 cleavage and mitochondrial fragmentation.
  • Overexpression of YME1L1 induced apoptosis, while its knockdown promoted cell growth.
  • High YME1L1 expression correlated with better neuroblastoma prognosis.
  • Knockdown of KIF1Bβ or YME1L1 inhibited NGF depletion-induced apoptosis.

Conclusions:

  • KIF1Bβ regulates intrinsic mitochondrial apoptosis via the YME1L1/OPA1 axis.
  • Mitochondrial fragmentation mediated by KIF1Bβ and YME1L1 is a key step in apoptosis.
  • Dysregulation of this pathway may contribute to neural crest tumors and neurodegenerative diseases.

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