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David Kuster

@rnadavid.bsky.social
2.3K followers 1.9K following 214 posts

RNA & Metabolism. Ancient companions for Life. RNA as spatial organizer of the Cell. IDPs, condensates, RNA fun & chromatin @Rosen&HymanLab, EMBL. MBL Physiology '25 🌊. And birds 🦜. ebird.org/profile/MjcyMDU0Nw inaturalist.org/people/9261834

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Mittal Group @ TAMU @mittalgrouptamu.bsky.social · 30/09/2026
(Part 1/2) Excited to share our recent work with Prof. Nicolas Fawzi’s group (nicolasluxfawzi.bsky.social), now out in Angewandte Chemie (onlinelibrary.wiley.com/doi/full/10....)! We show how RNA reshapes FUS condensate assembly and dynamics. Congrats to Tongyin, Kandarp, Samara, Qizan, Priyesh!
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John Burns @burnsajohn.bsky.social · 9h
Today I sat in the grass and saw a weevil and that was enough.
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Rob Klose @robklose.bsky.social · 30/09/2026
Come join us April 2027 for the next instalment of the EMBL Chromatin and Epigenetics meeting. Great invited speakers and lots of talks selected from abstracts! It will be a fantastic meeting (despite the egregious nucleosome images...)
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Hauke Hillen @haukehillen.bsky.social · 30/09/2026
We are looking for a new team member! Interested in structural biology, gene expression and organelles? Then apply now to our open PhD position: umg.recruiting-portal.com/r/z11okjqp6v...
umg.recruiting-portal.com
Institut für Zellbiochemie -- PhD (f/m/d)
PhD (f/m/d)
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paveltomancak.bsky.social @paveltomancak.bsky.social · 29/09/2026
No true scientist will outsource the fun of the creative process to a machine. We must focus on finding and eradicating the science operators who will stop at nothing to get more recognition & power. The impostors can be identified. We need to rely more on the good old human interactions.
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Omaya Dudin 𓂆 ¦🍉¦🦠¦🔬¦ @dudinlab.bsky.social · 30/09/2026
Going strong today with the sampling team ! Such a Bliss to be outdoors honnestly.
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paveltomancak.bsky.social @paveltomancak.bsky.social · 30/09/2026
Coffee at #embl. Bliss! Big thanks to my sponsors!
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Dave Appleton @applewildlife.bsky.social · 30/09/2026
#BirdHybrid
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Nature Structural & Molecular Biology @natsmb.nature.com · 30/09/2026
New online: A phosphoproteome atlas of human cell lines reveals the landscape of kinase activity
dlvr.it
A phosphoproteome atlas of human cell lines reveals the landscape of kinase activity
Nature Structural & Molecular Biology, Published online: 30 September 2026; doi:10.1038/s41594-026-01877-6Koenig et al. present a phosphoproteome atlas of 33 human cell lines covering >200,000 phosphosites, advancing cellular kinase activity scoring and drug sensitivity prediction, providing a resource for cell signaling insights and precision oncology.
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Svetlana Dodonova @dodonova-sveta.bsky.social · 30/09/2026
New preprint from Dodonova lab 🔔! Capturing multiple states by cryo-EM❄️, we show for the first time how archaeal RNA Polymerase engages a nucleosome and forms direct contacts with histones! 🧬 Great work by Gabriele & a fantastic collaboration with Dina Grohmann! 🧵 www.biorxiv.org/content/10.6...
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Bind Research @bindresearch.org · 22/09/2026
Fellow disordered protein 🍝 and NMR nerds 🧲: check out the preprint: www.biorxiv.org/content/10.6...
biorxiv.org
SpinForecast: chain-free probabilistic backbone assignment of intrinsically disordered proteins from NMR chemical shifts
Assigning peaks in NMR spectra to specific residues is an essential but time-consuming step in the study of intrinsically disordered proteins (IDPs). Conventional approaches rely on building chains of...
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Simon Bullock @simonbullock11.bsky.social · 28/09/2026
How are mRNAs linked to molecular motors in mammalian cells? In our new preprint, we show that FXR1/2 are RNA adaptors for the microtubule motor dynein. Our findings have also prompted us to rethink how activating adaptors contribute to motor-based transport (1/n)
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Comfortably Numb @numb.comfortab.ly · 28/09/2026
Claude making a scientific discovery
Black-and-white three-part comic. In the first scene, one simple cartoon figure holds out a small round handmade-looking object and says, “I MADE THIS.” Another figure replies, “YOU MADE THIS?” In the second scene, the second figure is shown alone holding the object. In the final scene, that figure holds it proudly and says, “I MADE THIS”
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Janet Kumita @jrkumita.bsky.social · 28/09/2026
Reminder of our seminar THIS FRIDAY (2nd Oct, 1pm BST)! Jennifer McManus and Mark Ashe are our speakers - all are welcome to join (details below). @markashe.bsky.social #condensates @physicsoflifeuk.bsky.social
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Emmanuel Levy's lab @elevylab.bsky.social · 25/09/2026
It took a while, but here we are. Our micDROP paper is out in @natcomms.nature.com, led by @atargt.bsky.social. She asked whether the sequence of a disordered region can self-recognize specifically. She measured this for ten IDRs in living yeast cells. www.nature.com/articles/s41...
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Julia Van Etten @couchmicroscopy.bsky.social · 26/09/2026
Protists deserve the spotlight and so do scientists! This was such an honor but mostly, this project reminded me why I have the best job and friends/colleagues in the world! 🔬
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 26/09/2026
🧬 Highly related @natgenet.nature.com paper from @binzmit.bsky.social group, using nucleosome-resolution chromatin modeling: Euchromatin forms condensed domains with short active regions on the surface www.nature.com/articles/s41... Congratulations! 🎉
nature.com
Euchromatin forms condensed domains with short active regions on the surface - Nature Genetics
Simulations integrating micro-C and imaging data provide a coherent view of chromatin organization from nucleosomes to clutches to domains, revealing that most regions form compact domains but short r...
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Rob Klose @robklose.bsky.social · 25/09/2026
I really enjoyed chatting with Stefan at the recent EMBO transcription and chromatin meeting about some of my thoughts on CpG island biology!
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erzbergerlab.bsky.social @erzbergerlab.bsky.social · 25/09/2026
In-cell structures visualize human pre-ribosome assembly in the nucleolus | Science www.science.org/doi/10.1126/...
science.org
In-cell structures visualize human pre-ribosome assembly in the nucleolus
In eukaryotes, ribosome biogenesis initiates within the nucleolus, a hallmark multilayered compartment of the nucleus. Structures of pre-ribosomes have been characterized ex situ, but their assembly p...
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Ki Sung Park @kisungpark.bsky.social · 24/09/2026
doi.org/10.1093/nar/...
doi.org
A multivalent RNA affinity tag enables selective purification of tagged RNAs and bound proteins
Abstract. Efficient purification of specific RNAs from lysates remains a major challenge. Existing methods, such as MS2 tagging or oligonucleotide hybridiz
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Yasin Dagdas @plantophagy.bsky.social · 24/09/2026
“People like me are actually not supposed to become mayor in this country.” www.theguardian.com/world/2026/s...
theguardian.com
Elif Eralp: ‘Germany’s Zohran Mamdani’ who vows to be a mayor for all Berliners
Die Linke candidate, a lawyer affected by her experiences as the child of political migrants from Turkey, poised to head Berlin coalition government
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Eugene Katrukha 🇺🇦 @ekatrukha.bsky.social · 23/09/2026
Preparing my submission for the next year's "Nikon Small World in Motion". It should qualify, since I wrote it on a PC connected to a microscope. No AI, pure GLSL GPU code www.shadertoy.com/view/f333Dj
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Institute of Molecular Biotechnology @imbavienna.bsky.social · 23/09/2026
Can “jumping genes” spread like viruses? New research from the Brennecke lab at IMBA shows that, in fruit flies, certain transposable elements can break out of their own cell and slip into developing eggs—securing their passage to the next generation. Published in Cell: imba.science/4jdMuYQ
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Maksim Kalutskii @maksimkalutskii.bsky.social · 23/09/2026
Excited to share our new preprint! 📜 Here, we used CALVADOS and ultra-CG models to show how the kinetochore establishes a robust attachment to the dynamic microtubule end. Spoiler: IDRs 🧵 1/n www.biorxiv.org/content/10.6...
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Frog and Toad Bot @frogandtoadbot.bsky.social · 23/09/2026
“Never mind,” said Frog.
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Buzz Baum @buzzbaum.bsky.social · 22/09/2026
We are looking for a research assistant! Come join the team: www.jobs.ac.uk/job/DSZ826/r...
jobs.ac.uk
Research Support Officer | Cell Biology | Dr Buzz Baum | LMB 2904 at MRC Laboratory of Molecular Biology
Start your UK & international job search for academic jobs, research jobs, science jobs and managerial jobs in leading universities and top...
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Kevin K. Yang 楊凱筌 @kevinkaichuang.bsky.social · 22/09/2026
Use reward-guided search in a generative model's latent space to design high-affinity protein binders to proteins and carbohydrates. @karstenkreis.bsky.social @pierceogden.bsky.social www.biorxiv.org/content/10.6...
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Omaya Dudin 𓂆 ¦🍉¦🦠¦🔬¦ @dudinlab.bsky.social · 22/09/2026
For two weeks, our entire lab is dropping everything to focus on one mission: deploying @embl.org's Advanced Mobile Laboratory to cultivate microbial eukaryotes from Alpine ecosystems. Our dream? Isolating new #Ichthyosporeans never cultured before. Let's see what we find. 🔬🏔️
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paveltomancak.bsky.social @paveltomancak.bsky.social · 21/09/2026
Some 30 years ago, I went for it. ‘Twas a good decision. Do it!
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RCSB Protein Data Bank @rcsbpdb.bsky.social · 21/09/2026
September 21 is #WorldAlzheimersDay Alzheimer's disease and prion diseases are linked to unnatural aggregation of proteins into amyloid fibrils.
pdb101.rcsb.org
PDB101: Molecule of the Month: Amyloids
Alzheimer's disease and prion diseases are linked to unnatural aggregation of proteins into amyloid fibrils.
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Martin Pacesa @martinpacesa.bsky.social · 21/09/2026
ʙɪɴᴅᴄʀᴀꜰᴛ2 is out, and we're not waiting for the paper. The full code drops today, free for academic and industry use. We're releasing it early so you can start designing right now, and bring its full power to the current Adaptyv competition. github.com/PacesaLab/Bi...
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Angelika Feldmann @angelikafeldmann.bsky.social · 18/09/2026
1\ We know a bit about how 3D chromatin interactions are formed, but what do we know about how they are disrupted? We asked this question in our latest preprint: doi.org/10.64898/202..., focusing on the massive loss of promoter interactions during neuronal differentiation.
doi.org
Developmentally programmed loss of long-range Polycomb interactions is regulated by cohesin
Distal regulatory elements (DREs), such as enhancers, can regulate genes across megabase-long distances, presumably via coming into close spatial proximity. The establishment of new transcriptional programmes during cell type transitions is associated with widespread rewiring of the spatial organisation of the genome, including gain and loss of chromatin interactions. Extensive effort has been invested into understanding how chromatin interactions are formed during development, yet the mechanisms underlying their developmental loss remain largely unclear. By leveraging chromatin accessibility-assisted footprinting, acute protein degradation and chromatin conformation capture, we show that loss of promoter interactions cannot be explained by reduced binding of sequence-specific transcription factors (TFs). Instead, we identify a subset of interactions that depend on cohesin for programmed developmental disruption. These sites are characterized by high Polycomb enrichment and TF occupancy and engage in strong long-range interactions that undergo extensive differentiation-dependent rewiring. Preventing interaction loss by acute cohesin degradation results in the preferential downregulation of associated genes. Together, these results suggest that cohesin indirectly regulates developmental loss of Polycomb interactions by enabling the acquisition of other potentially regulatory contacts in a process that may shape transcriptional programs during cell type transitions. ### Competing Interest Statement The authors have declared no competing interest. European Research Council Helmholtz Society, VH-NG-1604
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Alexey Amunts @amunts.bsky.social · 19/09/2026
Lab hike along Shenzhen coastline and up Qiniang mountain. A weekend reset with beautiful sea views.
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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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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 18/09/2026
🧬 Our “Behind the Paper” is now online at Nature Communities: “Active chromatin is not simply open—it forms compact domains that cohesin keeps from mixing.” 📖 A short story behind our recent @natgenet.nature.com paper. communities.springernature.com/posts/active... www.nature.com/articles/s41...
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André Nadler @nadlerlab.bsky.social · 17/09/2026
Much needed perspective
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Mariel Kleer @marielkleer.bsky.social · 17/09/2026
So happy to have this story out! What started as a project about the protein products of a polycistronic mRNA ended up becoming a story about how RNA-mediated assembly of nuclear speckles promotes viral gene expression. What a ride, some very good days on the microscope!! 🔬 @corcoranlab.bsky.social
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Lopes_Lab @lopeslab.bsky.social · 16/09/2026
Thrilled to share a new important study from the lab, published today in @nature.com, showing how cohesin mediates efficient replication fork plasticity and stress response, using its loop extrusion activity to promote 3D contacts on replicating DNA: www.nature.com/articles/s41...
nature.com
Cohesin reshapes replication fork contacts to aid fork slowing and reversal - Nature
Cohesin-mediated loop extrusion limits sister-fork coupling and tethers nearby replication forks under replication stress, promoting fork reversal and slowing fork progression to safeguard genome...
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erzbergerlab.bsky.social @erzbergerlab.bsky.social · 17/09/2026
doi.org/10.1083/jcb....
doi.org
Nucleolar dynamics are determined by the ordered assembly of the ribosome
Sheu-Gruttadauria et al. show that the material properties of the nucleolus are shaped by the assembly state of ribosomal precursors, which tune nucleolar
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Matthew L. Kraushar @matthewkraushar.bsky.social · 17/09/2026
RIP Ada Yonath, whose courage and brilliance solved the structure of life's exceptional complex - the ribosome. Her work in our institute, the MPI for Molecular Genetics @molgen.mpg.de, lives on in us - inspiring my lab in the ribosome tradition of Berlin 🫶 www.nature.com/articles/d41...
nature.com
Ada Yonath obituary: Crystallographer who overcame ‘impossible’ challenge of mapping the ribosome
Nobel laureate persisted despite widespread derision and revolutionized structural biology by protecting fragile crystals.
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Özlem Yilmaz Silverman @ozlemyilmazs.bsky.social · 16/09/2026
I wrote an essay (presenting two arguments) after reading these wonderful books. here: link.springer.com/article/10.1... Measuring biological processes, counting biological individuals,… 🌱 @ellenclarke.bsky.social @roto-rub.bsky.social @universitypress.cambridge.org @oxfordunipress.bsky.social
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bioRxiv Cell Biology @biorxiv-cellbio.bsky.social · 13/09/2026
SAF-A/HNRNPU regulates euchromatin dynamics and is required for nuclear envelope integrity www.biorxiv.org/content/10.64898/20…
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Robert Insall @robinsall.bsky.social · 16/09/2026
Very interesting paper. An old-fashioned concept - sadly now rare in biology - measure stuff accurately, and you can understand how it works... www.biorxiv.org/content/10.6...
biorxiv.org
Uncoupling microtubule lifetime, stability and post-translational modifications.
Microtubules (MTs) undergo continuous cycles of growth and disassembly. Because the transitions between these states are stochastic, MT age varies widely within a population. As MTs age, they are thou...
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Nature Cell Biology @natcellbio.nature.com · 16/09/2026
☕ @gabrijelad.bsky.social & co report that intron-retained RNAs derived from cell cycle- and genome maintenance-related genes are pooled at the nuclear speckle periphery and undergo synchronous splicing at mitosis, thus contributing to their temporal regulation. bit.ly/4xpanzZ
bit.ly
The periphery of nuclear speckles defines a spatially and temporally regulated compartment of long-lived intron-retained RNAs that resolves during mitosis - Nature Cell Biology
Biayna, Baranovskii and colleagues report that intron-retained RNAs derived from cell cycle- and genome maintenance-related genes are pooled at the periphery of nuclear speckles and undergo synchronou...
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Trends in Genetics @cp-trendsgenetics.bsky.social · 14/09/2026
"Mitotic chromosomes: from the chromosome scaffold model to condensins and physical forces" by Kazuhiro Maeshima ( @kazu-maeshima.bsky.social ) & colleagues FREE till Nov 3rd at authors.elsevier.com/a/1nmwrcQbJI...
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Pombo-GarciaLab @pombo-garcialab.bsky.social · 14/09/2026
We were honoured to showcase our science and inaugurate a cutting-edge microscopy technology with the UK Science Minister, highlighting how discovery science might drive future clinical advances. Exciting times ahead! www.itv.com/watch/news/o...
itv.com
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 15/09/2026
How are mitotic chromosomes built? Our Review @cp-trendsgenetics.bsky.social revisits the classical chromosome scaffold model and connects it to condensins, topoIIα, and physical forces. We propose interphase chromatin domains as “building blocks”🧩of chromosomes: authors.elsevier.com/a/1nmwrcQbJI...
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Alex Holehouse @alexholehouse.bsky.social · 14/09/2026
Doing the lords work over here
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EMBL Events @events.embl.org · 14/09/2026
And that's a wrap on the EMBO Workshop 'Chemical biology 2026'! #EMBOChemBio A huge thank you to everyone who joined us - from exciting science to lively discussions over coffee, it was a fantastic few days of exchanging ideas, making connections, and exploring the latest in chemical biology ⚗️🧪
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