4.8 Article

Phosphorylation of FAM134C by CK2 controls starvation-induced ER-phagy

Journal

SCIENCE ADVANCES
Volume 8, Issue 35, Pages -

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abo1215

Keywords

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Funding

  1. European Research Council (ERC) [714551]
  2. Telethon
  3. Associazione Italiana per la Ricerca sul Cancro (AIRC) [17717]
  4. Telethon Foundation [TMPGCBX16TT]
  5. AFM Telethon
  6. AIRC [MFAG-2020-24856]
  7. AIRC fellowship Francesco Alicino 2017 [25407]
  8. ERC [638891]
  9. Italian MIUR-PRIN 2017 [2017FJZZRC]
  10. Swiss National Supercomputing Center (CSCS) [u8]
  11. German Research Foundation DFG [SFB1177/2, WO210/20-2]
  12. Dr. Rolf M. Schwiete Stiftung [13/2017]
  13. RETOS projects Programme of Spanish Ministry of Science, Innovation and Universities, Spanish State Research Agency [SAF2015-67538-R, PID2019-104012RB-I00]
  14. Umberto Veronesi Foundation postdoctoral fellowship
  15. MICIU/AEI [BES-2017-081381]
  16. European Research Council (ERC) [714551, 638891] Funding Source: European Research Council (ERC)

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Selective degradation of the endoplasmic reticulum (ER) via autophagy is initiated by ER-phagy receptors, such as FAM134C, which is activated by phosphorylation by CK2 during starvation. This study also reveals the regulatory role of mTORC1 in FAM134C phosphorylation.
Selective degradation of the endoplasmic reticulum (ER) via autophagy (ER-phagy) is initiated by ER-phagy receptors, which facilitate the incorporation of ER fragments into autophagosomes. FAM134 reticulon family proteins (FAM134A, FAM134B, and FAM134C) are ER-phagy receptors with structural similarities and nonredundant functions. Whether they respond differentially to the stimulation of ER-phagy is unknown. Here, we describe an activation mechanism unique to FAM134C during starvation. In fed conditions, FAM134C is phosphorylated by casein kinase 2 (CK2) at critical residues flanking the LIR domain. Phosphorylation of these residues negatively affects binding affinity to the autophagy proteins LC3. During starvation, mTORC1 inhibition limits FAM134C phosphorylation by CK2, hence promoting receptor activation and ER-phagy. Using a novel tool to study ER-phagy in vivo and FAM134C knockout mice, we demonstrated the physiological relevance of FAM134C phosphorylation during starvation-induced ER-phagy in liver lipid metabolism. These data provide a mechanistic insight into ER-phagy regulation and an example of autophagy selectivity during starvation.

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