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.
Abstract:
KIF1Bβ, a member of the kinesin superfamily of motor proteins, is a haploinsufficient tumor suppressor mapped to chromosome 1p36.2, which is frequently deleted in neural crest-derived tumors, including neuroblastoma and pheochromocytoma. While KIF1Bβ acts downstream of the nerve growth factor (NGF) pathway to induce apoptosis, further molecular functions of this gene product have largely been unexplored. In this study, we report that KIF1Bβ destabilizes the morphological structure of mitochondria, which is critical for cell survival and apoptosis. We identified YME1L1, a mitochondrial metalloprotease responsible for the cleavage of the mitochondrial GTPase OPA1, as a physical interacting partner of KIF1Bβ. KIF1Bβ interacted with YME1L1 through its death-inducing region, as initiated the protease activity of YME1L1 to cleave the long forms of OPA1, resulting in mitochondrial fragmentation. Overexpression of YME1L1 promoted apoptosis, while knockdown of YME1L1 promoted cell growth. High YME1L1 expression was significantly associated with a better prognosis in neuroblastoma. Furthermore, in NGF-deprived PC12 cells, KIF1Bβ and YME1L1 were upregulated, accompanied by mitochondrial fragmentation and apoptotic cell death. Small interfering RNA-mediated knockdown of either protein alone, however, remarkably inhibited the NGF depletion-induced apoptosis. Our findings indicate that tumor suppressor KIF1Bβ plays an important role in intrinsic mitochondria-mediated apoptosis through the regulation of structural and functional dynamics of mitochondria in collaboration with YME1L1. Dysfunction of the KIF1Bβ/YME1L1/OPA1 mechanism may be involved in malignant biological features of neural crest-derived tumors as well as the initiation and progression of neurodegenerative diseases.
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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