1/ New paper alert! 🎉🧬 Our study on #9p21 gene regulation is out in #CellGenomics: "Chromatin topology and distal elements underlie divergent cell-type-specific regulation of 9p21 locus cell cycle genes" (Torlai Triglia, Miller, et al. www.cell.com/cell-genomic... 🧵
Dimple Notani
@dimplenotani.bsky.social
Associate Professor, NCBS, Bangalore. Interested in signaling driven gene regulation, enhancers, genome organisation, RNA
bioRxiv alert! CoPhasing resolves haplotype-specific 3D chromatin structures from GAM data, revealing extensive structural heterogeneity between human homologous chromosomes and its interplay with histone modifications and gene expression! Thanks to all coauthors! www.biorxiv.org/content/10.6...
biorxiv.org
Although cohesin-sensitive, long-range enhancer activation is equivalent in nature to proximal activation. Cooperativity can arise from different levels of activation inputs operating on a non-linear response function. @eliasfriman.bsky.social @uoe-igc.bsky.social www.biorxiv.org/content/10.6...
#RIP Pierre Chambon (1931-2026) via @alainberetz.bsky.social one of the last giants in biology: PARP, nuclear receptors, RNA Pol II, nucleosome, promoters, split genes
Our new preprint: Chromatin at ~10–100 kb scales behaves very differently from standard polymer expectations. DNA-PAINT data reveal broad fluctuations and sharp local bends. Our study suggests emergent active forces at these scales and quantifies the nature and strength of this activity
Happy to share our Current Opinion review on the key challenges in accurately predicting 3D distances between chromatin segments and computing their dynamics. Thanks to @djost-physbiol.bsky.social @lucagiorgetti.bsky.social for the invitation to write this review! @shuvadipdutta.bsky.social
Excited to share @suminkim.bsky.social and @mileshuseyin.bsky.social 's new Current Opinion review on how Polycomb complexes mediate 3D genome interactions including mechanistic models and potential roles in gene regulation: www.sciencedirect.com/science/arti...
Exited to share Current Opinion review on how chromatin hubs involving multiple enhancers and promoters are formed, and their potential roles in gene regulation: www.sciencedirect.com/science/arti...
Glad to share our latest work that came out recently. We dive into the mechanisms of how Transcription Factors (TFs) like the nuclear receptor, ERα navigate the genome to find their targets.
The deadline for common entrance exam (JGEEBILS) for I-PhD and PhD is on 26th October. Please apply! @ncbsbangalore.bsky.social @tifr.res.in
#PhDone! 🎓 Congratulations Dr Rajat! 🎉 Rajat Mann from Dr Dimple Notani's lab successfully defended his thesis! 🧵⬇️Scroll to know more about his work on transcription regulation 🧬 @dimplenotani.bsky.social (1/5)
#NewComicAlert! Our latest comic with Tinkle Comics Studio featuring the inspiring story of Dr Dimple Notani is out now! Dimple is an Associate Professor at NCBS studying gene regulation. Check it out and let us know your thoughts in the comments below! #sciencecomics @dimplenotani.bsky.social
Had a wonderful time discussing chromatin when some friends visited IIT Bombay, Mumbai! @vram142.bsky.social @dimplenotani.bsky.social @kaushikr.bsky.social