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Tobias Williams

@tobiaswilliams.bsky.social
75 followers 78 following 3 posts

Post doc at @FMIscience in the Chao lab | formerly @PeterMacCC | Views are my own

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Reposted by Tobias Williams
Maria Hondele @mariahondele.bsky.social · 18/09/2026
The heatwave is finally over - just in time for our “Frosty Foci” to finally come online! ❄️🦠 We found that E. coli builds a transient nucleolus-like ribosome biogenesis compartment during cold adaptation, when RNA (mis)folding makes ribosome biogenesis challenging.
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Reposted by Tobias Williams
Maria Hondele @mariahondele.bsky.social · 29/09/2026
And mRNPs are not simply cargo. Super-resolution imaging reveals SON/SRRM2 scaffold networks that organize retained mRNPs and remodel with mRNP load, suggesting that nuclear speckle architecture is tightly coupled to this layer of mRNP quality control.
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Reposted by Tobias Williams
Maria Hondele @mariahondele.bsky.social · 29/09/2026
Nuclear speckles are “hot”, but how do they actually sequester mRNPs? We find that stalled mRNPs are retained in nuclear speckles by a combinatorial RNA-binding protein network. www.biorxiv.org/content/10.6...
biorxiv.org
A combinatorial pre-mRNP retention factor network couples nuclear speckle architecture to splicing quality control
Cells must prevent incompletely spliced transcripts from entering the cytoplasm, yet how splicing status is recognized and converted into selective nuclear retention remains unclear. Here, we identify...
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Reposted by Tobias Williams
Josip Ahel @aheljo.bsky.social · 06/07/2025
🧵 New preprint! How does a chromatin remodeler know where to act? In our latest study, we show how the transcription factor ADNP targets CHD4 remodeling activity to silence transposons and block CTCF. 👇 A thread on the ChAHP complex and how it weaves chromatin 🧬🔬🧵 www.biorxiv.org/content/10.1...
biorxiv.org
Remodeling Activity of ChAHP Restricts Transcription Factor Access to Chromatin
Transcription in eukaryotes is regulated by chromatin-based mechanisms that control nucleosome occupancy, chromatin modifications, and transcription factor binding. We have previously shown that the transcription factor ADNP forms the ChAHP complex with the chromatin remodeler CHD4 and HP1 proteins, acting as a site-specific regulator of transcription and antagonist of CTCF binding. However, the molecular basis of these functions remained unclear. Here, we demonstrate that the CHD4 subunit is essential to antagonize CTCF and silence transcription of transposons, while HP1 proteins are dispensable. Although the remodeling activity of CHD4 is not required for ChAHP chromatin association, it is critical for both transposon repression and CTCF antagonism. Our findings support a model wherein ADNP recruits chromatin remodeling activity in a sequence-specific manner, enabling transcriptional control and local modulation of chromatin architecture. ### Competing Interest Statement The Friedrich Miescher Institute for Biomedical Research (FMI) receives significant financial contributions from the Novartis Research Foundation. Published research reagents from the FMI are shared with the academic community under a Material Transfer Agreement (MTA) having terms and conditions corresponding to those of the UBMTA (Uniform Biological Material Transfer Agreement). Novartis Research Foundation, n.a. Swiss National Science Foundation, grant 310030_188835
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Reposted by Tobias Williams
Jakob Schnabl-Baumgartner @jakobschnabl.bsky.social · 03/07/2025
📖 Happy to share our recent preprint! www.biorxiv.org/content/10.1... We discovered how SINEs are kept silent: the ChAHP protein complex acts as a molecular brake on POL III transcription retrotransposons. A 🧵:
biorxiv.org
ChAHP Silences SINE Retrotransposons by Inhibiting TFIIIB Recruitment
Short interspersed nuclear elements (SINEs) are abundant non-autonomous transposable elements derived from RNA polymerase III (POL III)-transcribed short non-coding RNAs. SINEs retain sequence feature...
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Sarah-Jane Dawson @sj-dawson.bsky.social · 18/03/2025
Are you a bioinformatician looking for an exciting opportunity in Melbourne? Is cancer genomics your passion? Apply now! www.nature.com/naturecareer...
nature.com
Post-Doctoral Researcher - Parkville, Melbourne (AU) job with Peter MacCallum Cancer Centre – Parkville | 12837536
Exciting opportunity to join a research program led by Sarah-Jane Dawson at the Peter MacCallum Cancer Centre (www.thedawsonlab.com).
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Reposted by Tobias Williams
Laure Plantard @laureplantard.bsky.social · 11/03/2025
One week left to send your application for the image analyst position. If you are interested, apply!
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Reposted by Tobias Williams
Cornelia Schwayer @cschwayer.bsky.social · 15/01/2025
I am very excited to share our most recent work on how ‘Cell heterogeneity and fate bistability drive tissue patterning during intestinal regeneration’ ☺️ Thanks a lot to @silviabarbiero.bsky.social @davidbrueckner.bsky.social @priscaliberali.bsky.social @ehannezo.bsky.social and all the co-authors!
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Tobias Williams @tobiaswilliams.bsky.social · 02/01/2025
Proud to share our paper on the impact of transcription inhibition on mRNA export in cancer. A big thanks to collaborators, especially to Ewa Michalak, Vi Wickramasinghe, Jeff Chao and Mark Dawson @mafdawson.bsky.social. @fmiscience.bsky.social
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