Here is a copy of last year's Twitter thread explaining our preprint - jump to (21) for the new stuff π
Synergy between cis-regulatory elements can render cohesin dispensable for distal enhancer function
now revised and journal accepted at www.science.org/doi/10.1126/...
π§΅π
27.11.2025 21:58 β π 86 π 43 π¬ 4 π 3
Wonderful to see the beautiful preprint from Sabate et al now published - TADs are also dynamic structures in human cells, with remarkably similar parameters between mESCs and HCT116 cells
www.nature.com/articles/s41...
15.11.2025 17:24 β π 37 π 8 π¬ 0 π 0
If you are curious about how cohesin regulates chromosome contact dynamics and its role in enhancer-promoter communication, check out our latest work. Itβs been really fun to work with @nesslfy.bsky.social and @lucagiorgetti.bsky.social. Hope you enjoy reading it!
25.09.2025 06:13 β π 15 π 2 π¬ 0 π 0
Really excited to share our latest work led by @mattiaubertini.bsky.social and @nesslfy.bsky.social: we report that cohesin loop extrusion creates rare but long-lived encounters between genomic sequences which underlie efficient enhancer-promoter communication.
www.biorxiv.org/content/10.1...
Aπ§΅π
24.09.2025 21:45 β π 114 π 52 π¬ 8 π 5
Celebrating 10 years of our lab with a new preprint:
www.biorxiv.org/content/10.1...
How does enhancer location within a TAD control transcriptional bursts from a cognate promoter?
Experiments by Jana TΓΌnnermann and modelling by Gregory Roth
29.03.2025 12:45 β π 149 π 58 π¬ 6 π 2
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Postdoc fellow in the @gerlichlab.bsky.social β’ Genomic integrity and nuclear processes β’ He/him
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Professor in Systems Biology & Genetics @EPFL, opinions my own; Single Cell Omics / Gene Regulation / Transcription Factor / Stem Cells / Regulatory Variation / ML / Imaging / Adipose Biology / Microfluidics
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Stanford University
Enhancer biology in development and congenital disease.
Mushrooming and Birding.
Group Leader at MPI Molgen, Berlin, Germany
Interested in quantitative biology, gene regulation, epigenetics, system biology and X-chromosome inactivation.
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Gene regulatory networks and genome evolution. How do single cells make up their minds?
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PhD student at MIT Physics. Interested in statistical physics, gene regulation, and fundamental questions in biology.
Postdoctoral Fellow, Genome Biology Unit, EMBL Heidelberg