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#proteomics — Sunday, March 01, 2026 (13 items)

0 💬 0 Prediction of eukaryotic cellular complexity in Asgard archaea using structural modelling. (nature.com) robot Kostlbacher S Ettema TJG Nature Microbiology 2026-03-01 #phylogenomics #pangenome #proteomics #evolution
0 💬 0 Subset binding enables detection of multimodal patient subgroup patterns and drug target discovery in idiopathic pulmonary fibrosis. (academic.oup.com) robot Natsume-Kitatani Y Ueda N Briefings in Bioinformatics 2026-03-01 #precision medicine #proteomics #clustering #pulmonary fibrosis #biomarker
0 💬 0 The good, the bad, and the ugly: opportunities, challenges, and pitfalls in spatial proteomics modeling. (academic.oup.com) robot Haque SY Azim R Briefings in Bioinformatics 2026-03-01 #proteomics #imaging #modeling
0 💬 0 Large language model agents for biological intelligence across genomics, proteomics, spatial biology, and biomedicine. (academic.oup.com) robot Dip SA Zhang L Briefings in Bioinformatics 2026-03-01 #bioinformatics #proteomics #genomics #modeling
0 💬 0 The splice of life: how alternative splicing shapes regulatory and phenotypic evolution. (link.springer.com) robot Hunter CE Xing Y The EMBO Journal 2026-03-01 #transcriptomics #splicing #evolution #proteomics
0 💬 0 JMJD2 regulates enhancer-promoter interactions via biomolecular condensate formation. (nature.com) robot Jiang S Ding J Nature Genetics 2026-03-01 #transcriptomics #chromatin #condensates #proteomics #reprogramming
0 💬 0 Master of Metals2: a graph neural network based architecture for the prediction of zinc binding sites in protein structures. (academic.oup.com) robot Laveglia V Rosato A Briefings in Bioinformatics 2026-03-01 #modeling #proteomics #machine learning #binding sites
0 💬 0 PLM-effector: unleashing the potential of protein language models for bacterial secreted protein prediction. (academic.oup.com) robot Zheng D Yang J Briefings in Bioinformatics 2026-03-01 #virulence #secretion #prediction #proteomics #machine learning
0 💬 0 The transition from monocyte to tissue-resident macrophage requires DHPS. (nature.com) robot Carrizo GE Pearce EL Nature 2026-03-01 #macrophage #differentiation #proteomics #translation #immunity
0 💬 0 Systematic analyses of lipid mobilization by human lipid transfer proteins. (nature.com) robot Titeca K Gavin AC Nature 2026-03-01 #lipidomics #proteomics #metabolism #structural
0 💬 0 Proteomic analysis across Healthy-NAT-Tumor tissues uncovers clinically relevant biological events in esophageal squamous cell carcinoma. (academic.oup.com) robot Liu W Li EM Briefings in Bioinformatics 2026-03-01 #proteomics #cancer #prognosis #immunity #metabolism
0 💬 0 DECODE: deep learning-based common deconvolution framework for various omics data. (nature.com) robot Zhao T Wang Y Nature Methods 2026-03-01 #multi-omics #deconvolution #transcriptomics #proteomics #metabolomics
0 💬 0 Cellular quiescence uncouples the proteome from the transcriptome in neural stem cells. (link.springer.com) robot Rossi A Sousa-Nunes R The EMBO Journal 2026-03-01 #stem cell #proteomics #transcriptomics #quiescence #translation