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Updated: Feb 9, 2026

Characterization of Neuronal Lysosome Interactome with Proximity Labeling Proteomics
Published on: June 23, 2022
Functional characterization of lysosomal interaction of Akt with VRK2
Noriyuki Hirata1, Futoshi Suizu1, Mami Matsuda-Lennikov1
1Division of Cancer Biology, Institute for Genetic Medicine, Hokkaido University, Sapporo, Japan.
Abstract:
Serine-threonine kinase Akt (also known as PKB, protein kinase B), a core intracellular mediator of cell survival, is involved in various human cancers and has been suggested to play an important role in the regulation of autophagy in mammalian cells. Nonetheless, the physiological function of Akt in the lysosomes is currently unknown. We have reported previously that PtdIns(3)P-dependent lysosomal accumulation of the Akt-Phafin2 complex is a critical step for autophagy induction. Here, to characterize the molecular function of activated Akt in the lysosomes in the process of autophagy, we searched for the molecules that interact with the Akt complex at the lysosomes after induction of autophagy. By time-of-flight-mass spectrometry (TOF/MS) analysis, kinases of the VRK family, a unique serine-threonine family of kinases in the human kinome, were identified. VRK2 interacts with Akt1 and Akt2, but not with Akt3; the C terminus of Akt and the N terminus of VRK2 facilitate the interaction of Akt and VRK2 in mammalian cells. The kinase-dead form of VRK2A (KD VRK2A) failed to interact with Akt in coimmunoprecipitation assays. Bimolecular fluorescence complementation (BiFC) experiments showed that, in the lysosomes, Akt interacted with VRK2A but not with VRK2B or KD VRK2A. Immunofluorescent assays revealed that VRK2 and phosphorylated Akt accumulated in the lysosomes after autophagy induction. WT VRK2A, but not KD VRK2A or VRK2B, facilitated accumulation of phosphorylated Akt in the lysosomes. Downregulation of VRK2 abrogated the lysosomal accumulation of phosphorylated Akt and impaired nuclear localization of TFEB; these events coincided to inhibition of autophagy induction. The VRK2-Akt complex is required for control of lysosomal size, acidification, bacterial degradation, and for viral replication. Moreover, lysosomal VRK2-Akt controls cellular proliferation and mitochondrial outer-membrane stabilization. Given the roles of autophagy in the pathogenesis of human cancer, the current study provides a novel insight into the oncogenic activity of VRK2-Akt complexes in the lysosomes via modulation of autophagy.
Insights
The serine-threonine kinase Akt interacts with VRK2 in lysosomes to regulate autophagy, impacting cell survival and cancer. This VRK2-Akt complex controls lysosomal function, proliferation, and viral replication.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Serine-threonine kinase Akt (also known as protein kinase B, PKB) is crucial for cell survival and implicated in human cancers.
- Akt's role in lysosomal function and autophagy regulation in mammalian cells is not fully understood.
- Previous work established Akt-Phafin2 complex lysosomal accumulation as vital for autophagy induction.
Purpose of the Study:
- To identify molecules interacting with activated Akt in lysosomes during autophagy.
- To elucidate the molecular function of the activated Akt-lysosome complex in autophagy.
- To investigate the role of the Vaccinia-related kinase 2 (VRK2)-Akt complex in cellular processes.
Main Methods:
- Time-of-flight mass spectrometry (TOF/MS) for protein identification.
- Coimmunoprecipitation and Bimolecular fluorescence complementation (BiFC) for interaction studies.
- Immunofluorescence assays to visualize protein localization and accumulation.
- VRK2 knockdown to assess functional consequences.
Main Results:
- VRK2 family kinases were identified as Akt-interacting partners in lysosomes.
- VRK2A, but not VRK2B or kinase-dead VRK2A, specifically interacted with Akt1/2 in lysosomes.
- VRK2 and phosphorylated Akt accumulated in lysosomes upon autophagy induction.
- VRK2 is essential for lysosomal accumulation of phosphorylated Akt and TFEB nuclear localization, thereby regulating autophagy.
- The VRK2-Akt complex influences lysosomal size, acidification, bacterial degradation, viral replication, cell proliferation, and mitochondrial stability.
Conclusions:
- The VRK2-Akt complex plays a critical role in autophagy regulation within lysosomes.
- VRK2-Akt modulates key cellular functions including proliferation and mitochondrial integrity.
- This study reveals novel insights into the oncogenic potential of VRK2-Akt complexes through autophagy modulation in cancer.
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