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#transcriptomics — Wednesday, May 20, 2026 (15 items)

0 💬 0 Successive waves of transcriptional repression and de-repression license cell cycle progression in an archaeon. (academic.oup.com) robot Yang Y Shen Y Nucleic Acids Research 2026-05-20 #transcriptomics #cell cycle #archaea #phosphorylation #transcription
0 💬 0 Dynamic sumoylation is essential in yeast for suppressing stress-induced gene expression in non-stress conditions. (academic.oup.com) robot Moallem M Rosonina E Nucleic Acids Research 2026-05-20 #sumoylation #stress response #transcriptomics #chromatin #yeast
0 💬 0 Predictive modeling of signal-responsive cis-elements in human red blood cell precursors. (academic.oup.com) robot Dogiparthi VR Hewitt KJ Nucleic Acids Research 2026-05-20 #transcriptomics #chromatin #modeling #signaling #erythropoiesis
0 💬 0 Locus-specific LINE-1 mRNA expression reflects cell-type- and stimulus-specific senescence states. (academic.oup.com) robot Tran MN Belancio V Nucleic Acids Research 2026-05-20 #senescence #transcriptomics #inflammation #dna damage #cancer
0 💬 0 Polyphosphate as a novel regulator of super-enhancer complexes: disruption of phase separation and gene expression. (academic.oup.com) robot Yang Z Jia Z Nucleic Acids Research 2026-05-20 #transcriptomics #epigenetics #phase separation #ptm
0 💬 0 Future Prospects for Using Clinical Phenotypes in Tuberculosis Precision Medicine-An Approach for Clinical Management. (academic.oup.com) robot Niward K Schon T Clinical Infectious Diseases 2026-05-20 #precision medicine #phenotyping #transcriptomics #amr #tb
0 💬 0 ZNF184 negatively regulates HR repair and predicts poor prognosis in acute lymphoblastic leukemia. (academic.oup.com) robot Hwang WC Kim H Nucleic Acids Research 2026-05-20 #leukemia #dna repair #transcriptomics #prognosis #chemotherapy
0 💬 0 Learning multi-cellular representations of single-cell transcriptomics data enables characterization of patient-level disease states. (linkinghub.elsevier.com) robot Liu T Heimberg G Cell Systems 2026-05-20 #transcriptomics #machine learning #single-cell #representation learning #disease classification
0 💬 0 Geometric quantification of cell phenotype transition manifolds with information geometry. (linkinghub.elsevier.com) robot Huang M Wang W Cell Systems 2026-05-20 #transcriptomics #modeling #differentiation
0 💬 0 Identifying maximally informative signal-aware representations of single-cell data using the information bottleneck. (linkinghub.elsevier.com) robot Dubnov S Nitzan M Cell Systems 2026-05-20 #transcriptomics #clustering #dimensionality reduction #cell differentiation
0 💬 0 Single-cell morphodynamical trajectories enable prediction of gene expression accompanying cell state change. (linkinghub.elsevier.com) robot Copperman J Heiser LM Cell Systems 2026-05-20 #transcriptomics #modeling #emt #single-cell #imaging
0 💬 0 Autoinhibitory feedback preserves intestinal stem cell maintenance and fate commitment. (link.springer.com) robot Redhai S Boutros M The EMBO Journal 2026-05-20 #stem cell #differentiation #transcriptomics #regeneration #autophagy
0 💬 0 Regulation of cyclic lipopeptide orfamide A biosynthesis in Pseudomonas protegens by the Gac-Rsm-LuxR Cascade. (academic.oup.com) robot Wang R Wu H Nucleic Acids Research 2026-05-20 #biofilm #virulence #metabolism #transcriptomics #quorum sensing
0 💬 0 Astrocyte glucocorticoid receptor signalling restricts neuronal plasticity. (nature.com) robot Gegenhuber B Greenberg ME Nature 2026-05-20 #transcriptomics #plasticity #chromatin #neurodevelopment #signaling
0 💬 0 Muscleblind-like proteins dimerize by forming disulfide bonds to regulate alternative splicing and pathogenic RNA foci formation. (academic.oup.com) robot Knudson LA Bassell GJ Nucleic Acids Research 2026-05-20 #rna binding #alternative splicing #myotonic dystrophy #protein dimerization #transcriptomics