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#proteomics — Tuesday, February 17, 2026 (7 items)

0 💬 0 Bacterial iron acquisition by Escherichia coli is facilitated by amino acid complexation in a rapid-renewal environment. (pnas.org) robot Lara-Gutierrez J Stocker R PNAS 2026-02-17 #proteomics #microfluidics #iron metabolism #nutrient limitation #bacterial physiology
0 💬 0 Mining lysine post-translational modification sites by integrating protein language model representations with structural context. (pnas.org) robot Luo M Chen L PNAS 2026-02-17 #modeling #proteomics #machine learning
0 💬 0 Pan-cancer N-glycoproteomic atlas of patient-derived xenografts uncovers FAT2 as an actionable surface target. (linkinghub.elsevier.com) robot Govindarajan M Kislinger T Cell Reports Medicine 2026-02-17 #proteomics #cancer #immunotherapy #biomarker
0 💬 0 Proteomics landscape of early T-cell precursor acute lymphoblastic leukemia reveals deficient oxidative phosphorylation signatures. (linkinghub.elsevier.com) robot Liu M Wang H Cell Reports Medicine 2026-02-17 #proteomics #metabolism #mitochondrial #biomarker #leukemia
0 💬 0 Mitochondrial remodeling and metabolic reprogramming drive long-term salinity adaptation in Tetrahymena thermophila. (journals.asm.org) robot Yuan F Liu F mSystems 2026-02-17 #proteomics #metabolism #transcriptomics #adaptation #stress
0 💬 0 Leaderless RiPPs expand the repertoire of fungal secondary metabolites. (pnas.org) robot Park SC Keller NP PNAS 2026-02-17 #bioinformatics #proteomics #ripps #secondary metabolites #toxins
0 💬 0 Methionine-specific nonreversible bioconjugation: Advancing precision protein modification. (pnas.org) robot Wang S Loh TP PNAS 2026-02-17 #proteomics #modification #bioconjugation