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Davide Mazza

@davidemazza.bsky.social
157 followers 84 following 27 posts
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Davide Mazza @davidemazza.bsky.social · 20/03/2026
* kinetic proofreading for transcriptional activation * Promoters sense TF dwell times, not occupancies --> definitely on my reading list! www.biorxiv.org/content/10.6...
biorxiv.org
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.
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Reposted by Davide Mazza
Alexis Verger 🧬🧫🧪 @alexis-verger.cpesr.fr · 20/03/2026
40 years after the cloning of Sp1, Robert Tjian and coll. discover even more properties www.science.org/doi/10.1126/...
science.org
Unstructured transcription factor interactions enable emergent specificity
How intrinsically disordered regions (IDRs) influence chromatin binding and nuclear organization of transcription factors (TFs) remains unclear. We employed proximity-assisted photoactivation (PAPA), ...
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Reposted by Davide Mazza
Tineke Lenstra @tinekelenstra.bsky.social · 12/03/2026
Ever wondered how a eukaryotic transcription factor finds its specific DNA motif in the vast genome? In this preprint, we directly measured the dynamics of this search process in living cells, revealing a cooperative mechanism mediated by disordered regions. 1/10 doi.org/10.64898/202...
doi.org
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Davide Mazza @davidemazza.bsky.social · 26/02/2026
🧵 I’m very happy to share a new preprint from the @samuzambrano.bsky.social group and ours — a project driven by @emabiong.bsky.social, a PhD student bold enough to tackle a question at the interface of our two expertises: how the biological oscillators p53 and NF-κB talk to each other.
biorxiv.org
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Davide Mazza @davidemazza.bsky.social · 23/10/2025
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!
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Davide Mazza @davidemazza.bsky.social · 15/05/2025
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.
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Davide Mazza @davidemazza.bsky.social · 12/02/2025
This looks sooo great! Congratulations @mirlab.bsky.social !!
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Reposted by Davide Mazza
Christof Gebhardt @gebhardtlab.bsky.social · 02/02/2025
Happy to share Duyen's and Philipp's work on effective binding energy landscape and affinity of RBPJ obtained in vivo by on- and off-rate measurements is now published. Great collaboration with labs of Franz Oswald and Tilman Borggrefe doi.org/10.1038/s414...
doi.org
Effective in vivo binding energy landscape illustrates kinetic stability of RBPJ-DNA binding - Nature Communications
Transcription factor binding to DNA is vital for gene regulation. Here, the authors determine the kinetics of DNA binding for RBPJ in living cells. They find that the binding is kinetically rather tha...
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Davide Mazza @davidemazza.bsky.social · 31/01/2025
Preprint from Marklund and Greenleaf labs on TF binding: www.biorxiv.org/content/10.1... In vitro single molecule imaging + In nuclei single molecule footprinting of KLF on engineeered sequences. On-rates matter more than off-rates, similarly to what previously shown in baceria.
biorxiv.org
Thermodynamic principles link in vitro transcription factor affinities to single-molecule chromatin states in cells
The molecular details governing transcription factor (TF) binding and the formation of accessible chromatin are not yet quantitatively understood - including how sequence context modulates affinity, h...
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Reposted by Davide Mazza
Rosana Collepardo @rcollepardo.bsky.social · 23/01/2025
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)
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Davide Mazza @davidemazza.bsky.social · 13/01/2025
This looks very interesting! www.science.org/doi/full/10.... On my reading list!
science.org
Chromatin conformation, gene transcription, and nucleosome remodeling as an emergent system
Gene transcription is an emergent phenomenon of packing domain geometry in situ.
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Reposted by Davide Mazza
bioRxiv Biochemistry @biorxiv-biochem.bsky.social · 07/01/2025
Real-time visualization of reconstituted transcription reveals RNA polymerase II activation mechanisms at single promoters www.biorxiv.org/content/10.1101/202…
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Reposted by Davide Mazza
Ben Engel @cellarchlab.com · 06/01/2025
Towards community-driven visual proteomics! Excited to finally share this large-scale curated & annotated dataset of 1829 high-quality #cryoET tomograms of the little green alga that just keeps giving— Chlamydomonas! 🧪🧶🧬🌾🌊🌍 Preprint📜: www.biorxiv.org/content/10.1... A short thread🧵👇
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Davide Mazza @davidemazza.bsky.social · 04/01/2025
Tasty, tasty phase separation. A much needed rigorous study!
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Anders Sejr Hansen @andersshansen.bsky.social · 20/12/2024
Excited to share @domenicnarducci.bsky.social 's paper now out in Mol Cell published back-to-back with the paper from @dewitlab.bsky.social‬ - despite lots of prior work, we find that ZNF143 has no looping function www.sciencedirect.com/science/arti... www.sciencedirect.com/science/arti...
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Davide Mazza @davidemazza.bsky.social · 20/12/2024
We often speak about chromatin as being accessible or inaccessible, but what does it mean? We wrote a short review on this, 🔬 focused: sciencedirect.com/science/arti... A big thank you to Tom Fillot for his efforts on this and to @hansen_lab @marcelonollmann for their help as editors.
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