Davide Mazza

@davidemazza.bsky.social

* kinetic proofreading for transcriptional activation * Promoters sense TF dwell times, not occupancies --> definitely on my reading list! www.biorxiv.org/content/10.6...

Kinetic proofreading as a mechanism for transcriptional specificity in living human cells

How target genes selectively respond to their specific transcription factors (TF) amid the vast excess of non-specific TFs in the nucleus remains a fundamental question in gene regulation. Here, we develop an integrated single-molecule imaging framework to quantitatively link TF dynamics with nascent transcription kinetics at endogenous gene loci to address the transcription factor specificity. Using endogenously Halo-tagged glucocorticoid receptor (GR), we show that ligand activation rapidly increases GR chromatin binding and residence times without substantially altering search kinetics. Live-cell nascent RNA imaging reveals that GR is essential for Dex induction of ERRFI1 transcription via increased burst frequency. Gene locus-specific, dual-color tracking demonstrates that GR display longer residence times in general near its target gene ERRFI1 compared to the non-target MYH9 locus, consistent with a kinetic proofreading model. A high-throughput imaging-based CRISPR screen identifies ATP-dependent processes, including neddylation and chromatin remodeling, and similarly, acute inhibition of the TFIIH XPB selectively impairs ERRFI1 transcription while sparing MYH9, implicating ATPase activity in GR target discrimination. In all, these findings establish that promoters function as dwell-time rather than occupancy detectors, discriminating specific from non-specific TF interactions through energy-dependent mechanisms. ### Competing Interest Statement The authors have declared no competing interest.

biorxiv.org

How do dynamics of signalling molecules skew cell fate decisions? With this review we try to move our first steps in the signalling dynamics field, together with the expert lead of @samuzambrano.bsky.social! Kudos to Fulvio, Sara and Erika for their excellent work!

Samuel Zambrano@samuzambrano.bsky.social · 10mo ago

Cells respond to stimuli by activating signaling pathways with a surprising variety of dynamics. Why? As we review here, there is growing evidence connecting dynamics with specific cell fate decisions www.frontiersin.org/journals/cel...

Minflux goes to chromatin! Very interesting preprint from @andersshansen.bsky.social lab, featuring co-first author @matteomazzocca.bsky.social, that keeps on making me very proud.

matteomazzocca.bsky.social@matteomazzocca.bsky.social · last yr.

1/ Super excited to share my first preprint from @andersshansen.bsky.social Lab! We used MINFLUX to track chromatin (H2B-Halo and Fbn2 locus) at an unprecedented 200 μs, then combined it with SPT to span μs-minutes (H2B) or SPT & Super-Res Live-Cell Imaging (SRLCI) to span μs-hours (Fbn2)

What is the multiscale structure of chromatin condensates? How does it shape thermodynamic and material properties? We address this at near-atomistic resolution🔥🔥🔥 using cryoET (Rosen & Villa labs, led by H Zhou), a new multiscale model (K Russell) and cryoET-guided sims (J Huertas & J Maristany)

Jan Huertas@janhuemar.bsky.social · 2y ago

Exciting new preprint alert! 🚨 The Collepardo lab, teaming up with Huabin Zhou and the Rosen lab we took a deep, high-resolution look into chromatin condensates! [1/6] #Chromatin #MD @rcollepardo.bsky.social @juliamaristany.bsky.social www.biorxiv.org/content/10.1...