4.8 Article

Phosphoglycerate Kinase 1 Phosphorylates Beclin1 to Induce Autophagy

Journal

MOLECULAR CELL
Volume 65, Issue 5, Pages 917-+

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2017.01.027

Keywords

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Funding

  1. National Cancer Institute [2R01 CA109035, 1R01 CA169603]
  2. Brain Cancer SPORE [2P50 CA127001]
  3. National Institute of Neurological Disorders and Stroke [1R01 NS089754]
  4. University of Texas MD Anderson Cancer Center [CA016672]
  5. James S. McDonnell Foundation 21st Century Science Initiative in Brain Cancer research award [220020318]
  6. Sister Institution Network Fund from The University of Texas MD Anderson Cancer Center
  7. UTMDACC Institutional Research
  8. National Natural Science Foundation of China [81672710, 81320108019, 81572499, 81572700]

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Autophagy is crucial for maintaining cell homeostasis. However, the precise mechanism underlying autophagy initiation remains to be defined. Here, we demonstrate that glutamine deprivation and hypoxia result in inhibition of mTOR-mediated acetyl-transferase ARD1 S228 phosphorylation, leading to ARD1-dependent phosphoglycerate kinase 1 (PGK1) K388 acetylation and subsequent PGK1-mediated Beclin1 S30 phosphorylation. This phosphorylation enhances ATG14L-associated class III phosphatidylinositol 3-kinase VPS34 activity by increasing the binding of phosphatidylinositol to VPS34. ARD1-dependent PGK1 acetylation and PGK1-mediated Beclin1 S30 phosphorylation are required for glutamine deprivation-and hypoxia-induced autophagy and brain tumorigenesis. Furthermore, PGK1 K388 acetylation levels correlate with Beclin1 S30 phosphorylation levels and poor prognosis in glioblastoma patients. Our study unearths an important mechanism underlying cellular-stress-induced autophagy initiation in which the protein kinase activity of the metabolic enzyme PGK1 plays an instrumental role and reveals the significance of the mutual regulation of autophagy and cell metabolism in maintaining cell homeostasis.

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