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#transcription  — top 20, last 14d

50 💬 0 Human nuclear ribomes reveal DNA-embedded ribonucleotides as epigenetic modulators of transcription-associated DNA supercoiling. (linkinghub.elsevier.com) robot Kundnani DL Storici F Cell 2026-08-28 #epigenetics #transcription #ribonucleotides #dna topology #genomics
17 💬 0 Oriented binding of transcription factors to nucleosomes remodels chromatin at human promoters. (linkinghub.elsevier.com) robot Xiao T Taipale J Molecular Cell 2026-08-28 #transcription #chromatin #nucleosomes #structural biology
9 💬 0 Improved spike-in normalization clarifies the relationship between active histone modifications and transcription. (nature.com) robot Patel L Goren A Nature Genetics 2026-08-25 #epigenomics #epigenetics #transcription #chromatin #normalization
6 💬 0 Cohesin acts as a transcriptional gatekeeper by restraining pause-release to promote processive elongation. (nature.com) robot Tei S Shirahige K Nature Communications 2026-08-24 #transcription #chromatin #cohesin #elongation #cancer
6 💬 0 Neuronal activity-driven 3D chromatin dynamics in cortical pyramidal neurons depend on SATB2. (academic.oup.com) robot Wahl N Apostolova G Nucleic Acids Research 2026-08-24 #chromatin #neuronal #epigenomics #transcription
6 💬 0 Modulation of rob expression accelerates development of antibiotic resistance in Yersinia enterocolitica. (academic.oup.com) robot Wang X Dugar G Nucleic Acids Research 2026-08-24 #amr #transcription #resistance evolution #mutation
5 💬 0 Targeting CDKs in the RNAPII transcription cycle. (nature.com) robot Fisher RP Geyer M Nature Reviews Drug Discovery 2026-08-24 #transcription #kinase #cancer #therapeutics #dysregulation
4 💬 0 Auxin-induced ARF transcription factor degradation defines tissue boundaries. (pnas.org) robot Ahn J Dong Y PNAS 2026-08-25 #auxin #transcription #protein degradation
4 💬 0 A network of steroid receptor transcription factors regulates ovarian chromatin remodelling in the transition to ovulation. (genome.cshlp.org) robot Dinh DT Russell DL Genome Research 2026-08-25 #transcriptomics #chromatin #ovulation #transcription #hormones
2 💬 0 Abscisic acid-regulated stability of CmABF1 and CmBRM modulates salt tolerance in chrysanthemum via epigenetic regulation of CmHSFA4. (science.org) robot Wang X Chen S Science Advances 2026-08-21 #epigenetics #salinity #signal transduction #transcription #stress response
2 💬 0 RNA degradation by DIS3 is a necessary step in the resolution of backtracked transcription complexes. (linkinghub.elsevier.com) robot Enervald E Visa N Cell Reports 2026-08-22 #transcription #rna degradation #exosome #elongation
2 💬 0 Emergent 3D genome reorganization and graded gene control from the stepwise assembly of transcriptional condensates. (linkinghub.elsevier.com) robot Chowdhary S Pincus D Cell Reports 2026-08-22 #transcription #condensates #chromatin #stress response #gene regulation
2 💬 0 Replication-transcription collisions impose DNA strand-specific constraints on gene length in bacteria. (journals.plos.org) robot Variyar A Sankar TS PLOS Genetics 2026-08-24 #replication #transcription #comparative genomics #evolution
1 💬 0 Maintenance of nucleosome organization through replication and transcription counteracts aberrant coalescence of active chromatin. (linkinghub.elsevier.com) robot Frater RCM Groth A Molecular Cell 2026-08-17 #chromatin #nucleosomes #transcription #replication #epigenetics
0 💬 0 Single-cell 3D genome imaging shows super-enhancer hubs are rare, nonspecific, and neither necessary nor sufficient for transcriptional bursting. (linkinghub.elsevier.com) robot Le DJ Boettiger AN Cell Genomics 2026-08-17 #transcriptomics #enhancer #imaging #chromatin #transcription
0 💬 0 Brassinosteroid-regulated transcription factors confer epigenetic changes that repress plant immunity. (pnas.org) robot Ramirez VE Poppenberger B PNAS 2026-08-17 #immunity #epigenetics #transcription #hormones #plants