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通过无标记质谱法进行的AMPK磷酸化位点分析揭示了众多受mTORC1调节的底物。

AMPK phosphosite profiling by label-free mass spectrometry reveals a multitude of mTORC1-regulated substrates.

作者信息

Smiles William J, Ovens Ashley J, Yu Dingyi, Ling Naomi X Y, Poblete Goycoolea Andrea C, Morrison Kaitlin R, Murphy Emmanuel O, Glaser Astrid, O'Byrne Sophie F Monks, Taylor Scott, Chalk Alistair M, Walkley Carl R, McAloon Luke M, Scott John W, Kemp Bruce E, Hoque Ashfaqul, Langendorf Christopher G, Petersen Janni, Galic Sandra, Oakhill Jonathan S

机构信息

Metabolic Signalling Laboratory, St. Vincent's Institute of Medical Research, Fitzroy, VIC 3065 Australia.

Research Program for Receptor Biochemistry and Tumour Metabolism, Department of Paediatrics, University Hospital of the Paracelsus Medical University, Salzburg, Austria.

出版信息

NPJ Metab Health Dis. 2025;3(1):8. doi: 10.1038/s44324-025-00052-7. Epub 2025 Mar 4.

Abstract

The nutrient-sensitive protein kinases AMPK and mTORC1 form a fundamental negative feedback loop that governs cell growth and proliferation. mTORC1 phosphorylates α2-S345 in the AMPK αβγ heterotrimer to suppress its activity and promote cell proliferation under nutrient stress conditions. Whether AMPK contains other functional mTORC1 substrates is unknown. Using mass spectrometry, we generated precise stoichiometry profiles of phosphorylation sites across all twelve AMPK complexes expressed in proliferating human cells and identified seven sites displaying sensitivity to pharmacological mTORC1 inhibition. These included the abundantly phosphorylated residues β1-S182 and β2-S184, which were confirmed as mTORC1 substrates on purified AMPK, and four residues in the unique γ2 N-terminal extension. β-S182/184 phosphorylation was elevated in α1-containing complexes relative to α2, an effect attributed to the α-subunit serine/threonine-rich loop. Mutation of β1-S182 to non-phosphorylatable Ala had no effect on basal and ligand-stimulated AMPK activity; however, β2-S184A mutation increased nuclear AMPK activity, enhanced cell proliferation under nutrient stress and altered expression of genes implicated in glucose metabolism and Akt signalling. Our results indicate that mTORC1 directly or indirectly phosphorylates multiple AMPK residues that may contribute to metabolic rewiring in cancerous cells.

摘要

营养敏感蛋白激酶AMPK和mTORC1形成一个基本的负反馈回路,该回路控制细胞生长和增殖。在营养应激条件下,mTORC1使AMPKαβγ异源三聚体中的α2-S345磷酸化,以抑制其活性并促进细胞增殖。AMPK是否含有其他功能性mTORC1底物尚不清楚。我们使用质谱法生成了在增殖的人类细胞中表达的所有十二种AMPK复合物中磷酸化位点的精确化学计量图谱,并鉴定出七个对mTORC1药理学抑制敏感的位点。其中包括大量磷酸化的残基β1-S182和β2-S184,它们在纯化的AMPK上被确认为mTORC1底物,以及独特的γ2 N端延伸中的四个残基。相对于α2,含α1的复合物中β-S182/184磷酸化水平升高,这一效应归因于α亚基富含丝氨酸/苏氨酸的环。将β1-S182突变为不可磷酸化的丙氨酸对基础和配体刺激的AMPK活性没有影响;然而,β2-S184A突变增加了细胞核AMPK活性,增强了营养应激下的细胞增殖,并改变了与葡萄糖代谢和Akt信号传导相关的基因表达。我们的结果表明,mTORC1直接或间接使多个AMPK残基磷酸化,这可能有助于癌细胞中的代谢重编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a306/12118697/f9dd236227a1/44324_2025_52_Fig1_HTML.jpg

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