Novel torin1-sensitive phosphorylation sites on the metabolic regulator AMPK revealed by label-free mass spectrometry
Smiles, W. J.; Ovens, A. J.; Yu, D.; Ling, N. X. Y.; Hoque, A.; Scott, J. W.; Galic, S.; Langendorf, C. G.; Kemp, B. E.; Petersen, J.; Oakhill, J. S.
Show abstract
AMPK and mTORC1 are nutrient-sensitive protein kinases that form a fundamental negative feedback loop that governs cell growth and proliferation. AMPK is an {beta}{gamma} heterotrimer that is directly phosphorylated by mTORC1 on 2S345 to suppress AMPK activity and promote cell proliferation under nutrient stress conditions. Using mass spectrometry, we generated precise phosphorylation profiles of all 12 AMPK complexes expressed in proliferating human cells. Of the 18 phosphorylation sites detected, seven were sensitive to pharmacological mTORC1 inhibition, including four in the AMPK {gamma}2 isoform NH2-terminal domain and 2S377 which is located in the nucleotide-sensing motif. In particular, {beta}1S182 and {beta}2S184 were found to be mTORC1 substrates in vitro and near-maximally or substantially phosphorylated under cellular growth conditions. {beta}S182 phosphorylation was elevated in 1-containing complexes, relative to 2, an effect partly attributable to the non-conserved -subunit serine/threonine-rich loop. While mutation of {beta}1S182 to a non-phosphorylatable Ala had no effect on basal and ligand-stimulated AMPK activity, {beta}2-S184A mutation increased nuclear AMPK activity and enhanced cell proliferation under nutrient stress. We conclude that mTORC1 governs the nuclear activity of AMPK to regulate transcription factors involved in metabolism and cell survival during nutrient shortage.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Trafficking regulator of GLUT4-1 (TRARG1) is a GSK3 substrate 95%
- Use of the Polo-like kinase 4 (PLK4) inhibitor centrinone to investigate intracellular signaling networks using SILAC-based phosphoproteomics 95%
- Phosphoproteomics reveals that the hVPS34 regulated SGK3 kinase specifically phosphorylates endosomal proteins including Syntaxin-7, Syntaxin-12, RFIP4 and WDR44 94%
Similar papers in this journal
- Salt-inducible kinase inhibition promotes the adipocyte thermogenic program and adipose tissue browning 94%
- The type 2 diabetes gene product STARD10 is a phosphoinositide binding protein that controls insulin secretory granule biogenesis 93%
- Receptor Activity-Modifying Protein 2 (RAMP2) alters glucagon receptor trafficking in hepatocytes with functional effects on receptor signalling 93%
Similar papers in this journal
- MAP4K3 inhibits Sirtuin-1 to repress LKB1-AMPK to promote amino acid dependent activation of mTORC1 94%
- Loss-of-function cancer-associated mutations in the EIF4G2 non-canonical translation initiation factor 91%
- Stress-induced tyrosine phosphorylation of RtcB modulates IRE1 activity and signaling outputs. 91%
Similar papers in this journal
- UBTD1 regulates ceramide balance and endolysosomal positioning to coordinate EGFRsignaling 93%
- Disease related mutations in PI3Kγ disrupt regulatory C-terminal dynamics and reveals a path to selective inhibitors 93%
- DYRK1A Interacts with the Tuberous Sclerosis Complex and Promotes mTORC1 Activity 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.