Post-translational modifications (PTMs) play key roles in regulating cell signaling and physiology in both normal and cancer cells. Advances in mass spectrometry enable high-throughput, accurate, and sensitive measurement of PTM levels to better understand their role, prevalence, and crosstalk. Here, we analyze the largest collection of proteogenomics data from 1,110 patients with PTM profiles across 11 cancer types (10 from the National Cancer Institute's Clinical Proteomic Tumor Analysis Consortium [CPTAC]). Our study reveals pan-cancer patterns of changes in protein acetylation and phosphorylation involved in hallmark cancer processes. These patterns revealed subsets of tumors, from different cancer types, including those with dysregulated DNA repair driven by phosphorylation, altered metabolic regulation associated with immune response driven by acetylation, affected kinase specificity by crosstalk between acetylation and phosphorylation, and modified histone regulation. Overall, this resource highlights the rich biology governed by PTMs and exposes potential new therapeutic avenues.
Pan-cancer analysis of post-translational modifications reveals shared patterns of protein regulation.
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作者:Geffen Yifat, Anand Shankara, Akiyama Yo, Yaron Tomer M, Song Yizhe, Johnson Jared L, Govindan Akshay, Babur Ãzgün, Li Yize, Huntsman Emily, Wang Liang-Bo, Birger Chet, Heiman David I, Zhang Qing, Miller Mendy, Maruvka Yosef E, Haradhvala Nicholas J, Calinawan Anna, Belkin Saveliy, Kerelsky Alexander, Clauser Karl R, Krug Karsten, Satpathy Shankha, Payne Samuel H, Mani D R, Gillette Michael A, Dhanasekaran Saravana M, Thiagarajan Mathangi, Mesri Mehdi, Rodriguez Henry, Robles Ana I, Carr Steven A, Lazar Alexander J, Aguet François, Cantley Lewis C, Ding Li, Getz Gad
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2023 | 起止号: | 2023 Aug 31; 186(18):3945-3967 |
| doi: | 10.1016/j.cell.2023.07.013 | ||
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