Choline kinase alpha 2 acts as a protein kinase to promote lipolysis of lipid droplets

Rui Liu, Jong Ho Lee, Jingyi Li, Rilei Yu, Lin Tan, Yan Xia, Yanhua Zheng, Xue Li Bian, Philip L. Lorenzi, Qianming Chen, Zhimin Lu

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

Lipid droplets are important for cancer cell growth and survival. However, the mechanism underlying the initiation of lipid droplet lipolysis is not well understood. We demonstrate here that glucose deprivation induces the binding of choline kinase (CHK) α2 to lipid droplets, which is sequentially mediated by AMPK-dependent CHKα2 S279 phosphorylation and KAT5-dependent CHKα2 K247 acetylation. Importantly, CHKα2 with altered catalytic domain conformation functions as a protein kinase and phosphorylates PLIN2 at Y232 and PLIN3 at Y251. The phosphorylated PLIN2/3 dissociate from lipid droplets and are degraded by Hsc70-mediated autophagy, thereby promoting lipid droplet lipolysis, fatty acid oxidation, and brain tumor growth. In addition, levels of CHKα2 S279 phosphorylation, CHKα2 K247 acetylation, and PLIN2/3 phosphorylation are positively correlated with one another in human glioblastoma specimens and are associated with poor prognosis in glioblastoma patients. These findings underscore the role of CHKα2 as a protein kinase in lipolysis and glioblastoma development.

Original languageEnglish (US)
Pages (from-to)2722-2735.e9
JournalMolecular cell
Volume81
Issue number13
DOIs
StatePublished - Jul 1 2021

Keywords

  • AMPK
  • KAT5
  • PLIN2/3
  • acetylation
  • autophagy
  • choline kinase
  • lipid droplet
  • lipolysis
  • phosphorylation
  • tumorigenesis

ASJC Scopus subject areas

  • Molecular Biology
  • Cell Biology

MD Anderson CCSG core facilities

  • Bioinformatics Shared Resource
  • Metabolomics Facility

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