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Ahmad Jomaa

@jomaalab.bsky.social
530 followers 666 following 81 posts

Assistant Professor at the University of Virginia, Biochemist, Molecular and Structural Biologist, Husband, Father, Traveller #cryoem #ribosome #rna med.virginia.edu/jomaa-lab/

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Reposted by Ahmad Jomaa
Basil Greber @bjgreber.bsky.social · 01/10/2026
... check out the latest pre-print by @claudioalfieri.bsky.social & his team! www.biorxiv.org/content/10.6...
biorxiv.org
Cryo-tides: synthetic peptides for cryo-EM grid preparation of multi-subunit protein complexes sensitive to the air-water interface
Cryogenic electron microscopy (cryo-EM) has enabled rapid progress in structural biology throughout the last decade. However, cryo-EM sample preparation still represents a major bottleneck in high-res...
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Ryan Flynn @raflynn5.bsky.social · 30/09/2026
Excited to share two recent collaborative works from the lab related to cell surface RNA binding proteins (csRBPs) in cancer.
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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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joe dobbs @joedobbs.bsky.social · 25/09/2026
Our work investigating the cooperation between gene expression machines is now online @cellpress.bsky.social. Check it out if you're interested in high-throughput #cryoET, transcription and translation, or using structural biology to quantify gene expression in cells! 🔬 www.cell.com/cell/fulltex...
cell.com
Single-cell visual proteomics of a minimal bacterium reveals structural coordination of gene expression machineries
Cryo-electron tomography (cryo-ET) resolves and quantifies an almost complete view of bacterial translation, revealing how gene expression machineries coordinate across the processes of transcription,...
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Rasmus Jensen @rasmusjensen.bsky.social · 25/09/2026
🎉 Out today in Cell: the paper I've been looking forward to sharing for a long time 🎉 We used cryo-ET to find a molecular machine nobody knew existed on the surface of a minimal bacterium, and worked out what it does. 🧵(1/7) #TeamTomo #cryoET
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Craig Kaplan @triggerloop.bsky.social · 25/09/2026
Cryo-EM peeps are living the dream 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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Reposted by Ahmad Jomaa
Elodie Carmen Leroy @ecleroy.bsky.social · 21/09/2026
How can a single antibiotic halt translation across all domains of life? 🧬 Our new study in Nucleic Acids Research reveals how Sparsomycin traps active ribosomes through a conserved mechanism. academic.oup.com/nar/article/... #Ribosome #Translation #StructuralBiology #Antibiotics #RNA #iTPseq
Graphical representation of the T. thermophilus 70S ribosome showing the 30S and 50S subunits, mRNA, and P-site tRNA. Sparsomycin (yellow) binds in the peptidyl transferase center at the interface between the A and P sites. The enlarged view shows sparsomycin occupying the A-site cleft adjacent to the P-site fMet-tRNA, closely contacting its 3′ CCA end (C74, C75 and A76) and the attached fMet.
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Beckmann Lab @beckmannlab.bsky.social · 10/09/2026
📰Happy to share our preprint.🥳Here we investigate🔬, the essential role of the conserved RNA helicase Drs1. We show that its engagement and activity license timely incorporation of 25S rRNA domain III into maturing nucleolar pre-60S subunits.👇 doi.org/10.64898/2026.09.05.749353 #cryoEM #ribosome #RNA
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Beckmann Lab @beckmannlab.bsky.social · 14/09/2026
New preprint! 👀RNAse activity has to be tightly regulated.✂️🧬Here, we present the dynamic architecture of the conserved Rixosome complex – a major player in ribosome maturation and heterochromatin maintenance. Our results give insights into its mode of activation.👇 #cryoEM #Ribosome #RNA
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Alan Brown @alanbrownhms.bsky.social · 10/09/2026
Millions of beating cilia keep airways clean. At the base of each is the transition zone (TZ), a gate that controls which proteins enter and leave. In our paper out today in Science, we used cryo-FIB-ET to image the TZ inside human airway cells www.science.org/doi/10.1126/...
science.org
In situ structure of the human ciliary transition zone links linker defects to primary ciliary dyskinesia
The ciliary transition zone (TZ) regulates ciliary proteome composition, yet its molecular architecture, protein content, and contribution to motile ciliopathies remain poorly defined. We applied in situ cryo-electron tomography and subtomogram averaging ...
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Reposted by Ahmad Jomaa
Michael Hothorn @structplantbio.bsky.social · 11/09/2026
Nice work by @cellsensing.bsky.social Glycan recognition by a plant damage-sensing immune receptor www.science.org/doi/10.1126/...
science.org
Glycan recognition by a plant damage-sensing immune receptor
Pathogens target and degrade the extracellular matrix surrounding plant cells. A central question is how cell wall-derived damage-associated molecular patterns (DAMPs) are recognized and integrated to...
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Reposted by Ahmad Jomaa
Kranzusch Lab @kranzuschlab.bsky.social · 10/09/2026
Stunning cryo-ET analysis from the Harrison Lab capturing every stage of how non-membrane viruses infect animal cells www.science.org/doi/10.1126/...
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Stella Hurtley @smhsci.bsky.social · 28/08/2026
Out now in @science.org Nonviral delivery of chemically modified tRNA rescues nonsense mutations in cystic fibrosis | Science www.science.org/doi/10.1126/...
science.org
Nonviral delivery of chemically modified tRNA rescues nonsense mutations in cystic fibrosis
Suppressor transfer RNAs (sup-tRNAs) can rescue disease-causing nonsense mutations by promoting readthrough of premature termination codons (PTCs). Their clinical translation is limited by suboptimal ...
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Reposted by Ahmad Jomaa
Florent Waltz @florentwaltz.bsky.social · 27/07/2026
This story is now published in @natplants.nature.com ! 🎉🎩 Check out the final article here: nature.com/articles/s41477-026-02361-1 Very similar to the original bioRxiv preprint, with the addition of some cool polysome analysis (in the supplementals)! Thanks and congrats to everyone involved! 🙏
nature.com
Chloroplast-encoded small subunit extensions reshape the Chlamydomonas chlororibosome - Nature Plants
Using in situ cryo-electron tomography, researchers found a unique ‘arm’ domain on the small subunit of Chlamydomonas chlororibosomes. This discovery suggests that chlororibosome structure is more evo...
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Tanmay Bharat @tbharat-lab.bsky.social · 15/07/2026
Structural basis of biofilm formation mediated by the Pseudomonas aeruginosa fibrillar adhesin CdrA led by @olivia--smith.bsky.social Collaboration with @alexbateman1.bsky.social , Andres Floto and @geiselbiofilm.bsky.social labs
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Vanni Lab at UNIFR, Switzerland @labvanni.bsky.social · 23/07/2025
Happy to share the latest work from the lab, led by @mudgal17.bsky.social‬, in collaboration with the Weis lab @ethzurich.bsky.social. How do nuclear membranes fuse during NPC assembly? We answer this question in our latest work, where we identify a new mechanism for membrane fusion… (1/13)
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Sternberg Lab @sternberglab.bsky.social · 09/07/2026
1/11 New preprint from the Sternberg lab in collaboration with the Fernández lab! We are excited to share our structure-function study of DRT10, a bacterial defense-associated reverse transcriptase that synthesizes long tandem-repeat DNA.🧵 Read the full story here: www.biorxiv.org/content/10.6...
biorxiv.org
Mechanism of tandem-repeat DNA synthesis by an antiviral reverse transcriptase
Defense-associated reverse transcriptases (DRTs) employ DNA synthesis to protect bacteria against phage infection[1][1],[2][2]. We previously showed that DRT10, a tripartite system comprising an RT, a...
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Di Jiang @dijiang319.bsky.social · 09/07/2026
In print today @science.org Laser phase plate improves structure determination of small proteins by cryo-EM | Science www.science.org/doi/10.1126/...
science.org
Laser phase plate improves structure determination of small proteins by cryo-EM
Phase plates can, in principle, overcome the poor image contrast in cryo–electron microscopy (cryo-EM) and the resulting limits on the structural reconstruction of small proteins. However, previous de...
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Chi-Min Ho @cmholab.bsky.social · 30/06/2026
Incredibly proud of Messi Haile @mehsehret.bsky.social, a founding member of the Ho Lab, for her beautiful work uncovering the inner workings of a central piece of the malaria parasite invasion machinery: the malarial moving junction, out today in @cellpress.bsky.social! tinyurl.com/4p3md2eb 🦠❄️🔬
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Kedrov Lab @ HHU @kedrov-lab.bsky.social · 26/06/2026
We are on air! Congratulations to everyone behind the story ❤️‍🔥 and thanks to @embojournal.org for providing the stage! link.springer.com/article/10.1...
link.springer.com
Substrate-induced assembly and functional mechanism of the membrane protein insertase SecYEG-YidC - The EMBO Journal
The Sec translocon and the YidC/Oxa1-type insertases universally mediate biogenesis of α-helical membrane proteins, but the molecular basis of their cooperation has remained disputed. Recent discovery...
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Reposted by Ahmad Jomaa
Robert Arkowitz @robertarkowitz.bsky.social · 21/06/2026
www.biorxiv.org/content/10.6...
biorxiv.org
Ribosomes are covered by a coat of flexible protein fragments
Ribosomal proteins contain flexible terminal regions that are averaged out during electron density reconstructions, rendering them absent from experimental models derived by X-ray crystallography or c...
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Danielle Grotjahn @nanigrotjahn.bsky.social · 16/06/2026
Cryo-ET is often framed as a tool for in situ protein structure. But what if the real revolution is contextualization? I explore how #teamtomo is redefining what "local" means in organelle biology, revealing membrane states rather than just protein structures. tinyurl.com/localmembrane
sciencedirect.com
Think globally, act locally: Redefining organellar membrane environments through cryo-electron tomography
Early enthusiasm for the “cellular revolution” in cryo-electron tomography (cryo-ET) was largely driven by the promise of resolving protein structures…
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Vanni Lab at UNIFR, Switzerland @labvanni.bsky.social · 12/06/2026
This amazing work by @danialv.bsky.social and Bodan Hu is now out in peer-reviewed form at @cp-cell.bsky.social with a lot of new simulations! Check it out if interested in lipid transport!
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Tanmay Bharat @tbharat-lab.bsky.social · 08/06/2026
Disrupting phage liquid crystalline droplets restores antibiotic susceptibility in Pseudomonas aeruginosa biofilms out in @plosbiology.org by @abultarafder.bsky.social and team. Exciting collaboration with @geiselbiofilm.bsky.social @pearce-maths.bsky.social and others
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Wilson Lab @wilsonlab.bsky.social · 03/06/2026
www.nature.com/articles/s41...
nature.com
A natural depsipeptide antibiotic binds the E-site of the bacterial ribosome - Nature
Improved fractionation strategies can identify antibiotics with previously unseen scaffolds and mechanisms, exemplified by manikomycin from Streptomyces rimosus, which acts by targeting the E-site of ...
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Reposted by Ahmad Jomaa
Wilson Lab @wilsonlab.bsky.social · 03/06/2026
www.nature.com/articles/s41...
nature.com
Flipping antimicrobial peptides in the exit tunnel of the bacterial ribosome - Nature Communications
In this work authors show how minimal mutations in proline-rich antimicrobial peptides can flip their orientation in the ribosome exit tunnel, switching their mechanism from stalling translation termi...
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Reposted by Ahmad Jomaa
Structura Biotechnology @structurabio.bsky.social · 02/06/2026
For years, the #cryoEM community viewed ~50 kDa as the practical lower size limit for SPA. This was challenged by Kim et al., who introduced the HR-HAIR method and demonstrated structure determination of proteins below 30 kDa using #CryoSPARC. Read more 👉 bit.ly/3RHMxAt
bit.ly
CryoSPARC | The Resolution Revolution Is Still Ongoing
High-Resolution Ab-Initio Reconstruction: Extending Cryo-EM to Smaller Particles with CryoSPARC™
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Pilhofer Lab 🦠❄️🔬 @pilhoferlab.bsky.social · 01/06/2026
🛠️💉It's time for engineering contractile injection systems! @chipericson.bsky.social & @davidschaumann.bsky.social introduce programmable CIS - PROCIS, combining tail length control, non-native cargo loading, and cell retargeting all in one system! www.biorxiv.org/content/10.6... 🧵 1/5
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Kurianlab @kurianlab.bsky.social · 22/05/2026
Check this fantastic, first-of-its-kind method to reversibly deplete proteins exclusively from mature ribosomes by @mbarnalab.bsky.social and colleagues: www.sciencedirect.com/science/arti...
sciencedirect.com
Ribo-Tweezer: Rapid removal of ribosomal proteins reveals additional layers of post-transcriptional gene regulation
The ribosome is a ribozyme, but it also acts as a dynamic regulator of gene expression. Although ribosomal protein (RP) composition varies, dissecting…
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Ahmad Jomaa @jomaalab.bsky.social · 13/05/2026
Excited to share our work uncovering SNOR, a ribosome-associated factor that promotes translation restart after dormancy published in Nature!! This was, as usual, a wonderful collaborative effort between our group and the Mattei Lab @simonemattei.bsky.social @embl.org www.nature.com/articles/s41...
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Dawid Zyla @dzyla.bsky.social · 07/05/2026
Measles is coming back. Until now, we didn't know how human antibodies actually recognize and neutralize the virus. No structure of either measles surface protein bound to a human antibody had ever been reported. We set out to change that.
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niels-fischer.bsky.social @niels-fischer.bsky.social · 07/05/2026
How do mitochondrial ribosomes keep pace with membrane insertion? Now out in NSMB: We show that mitoribosomes slow down at defined positions linked to membrane insertion and protein topology: rdcu.be/fhqIT #Mitochondria #Ribosome #CryoEM
rdcu.be
Membrane insertion of mitochondrial-encoded proteins regulates ribosome decoding speed
Nature Structural & Molecular Biology - Schöndorf and Petrychenko et al. show that mitochondrial translation speed is coupled to OXA1L-mediated inner membrane insertion, with...
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Tanmay Bharat @tbharat-lab.bsky.social · 07/05/2026
Oxygen gradients reshape cross-feeding through emergent spatial organization of gut commensal bacteria www.biorxiv.org/content/10.6... Use of isotope labels and cryo-CLEM-FIB-SIMS to study microbial communities by Hannah Ochner. Collaboration with @kiranrpatil.bsky.social @jmghigolab.bsky.social
biorxiv.org
Oxygen gradients reshape cross-feeding through emergent spatial organization of gut commensal bacteria
Microbial interactions unfold within environments structured by physical transport and chemical gradients. Yet most mechanistic studies rely on well-mixed systems that mask the reciprocal influences of environmental heterogeneity on metabolism and ecology. Here, we investigate how the physical environment modulates the interaction between the gut commensal Bacteroides thetaiotaomicron and Escherichia coli . In anoxic liquid culture, cell-resolved isotope imaging and genetic perturbations reveal exploitative cross-feeding, where E. coli consumes diffusible sugars released by B . thetaiotaomicron during starch degradation. When exposed to intestinal-like oxygen gradients in microfluidics, the interaction is restructured by spatial organization. The species self-organize into complementary niches: E. coli locally depletes sugars and oxygen, thereby expanding the anoxic niche required by B. thetaiotaomicron . A reactive transport model confirms that this organization arises from coupled feedback between physical transport and metabolic reaction rates. Together, our results reveal how physical structure and chemical gradients convert an exploitative cross-feeding interaction into a dynamic niche-construction process that generates emergent spatial organization and stabilizes coexistence. ### Competing Interest Statement The authors have declared no competing interest.
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Dimitry Tegunov @dtegunov.bsky.social · 03/05/2026
We're super excited to share MissAlignment: a new ML-based approach to reference-free tilt series alignment, spearheaded by @martenchaillet.bsky.social. We think it's going to make your cryo-ET life a lot better. Preprint: www.biorxiv.org/content/10.6... Code: github.com/warpem/miss-... 🧶 Thread:
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Martin Pacesa @martinpacesa.bsky.social · 29/04/2026
I am happy to share a review I recently wrote on the design of peptide binders. It gives an overview of experimentally validated tools and discusses the challenges of why peptide design is more difficult than the design of classical protein binders. www.chimia.ch/chimia/artic...
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Kai Yi @kaiyi94.bsky.social · 28/04/2026
Thrilled with the our results with @kjamali.bsky.social and @sjorsscheres.bsky.social from the recent binder competition! 🎉 2 of our 7 designs successfully bound to the target, with affinities ranking 2nd and 3rd overall. All of these designs targeted the disordered region of the protein.
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Doudna Lab @doudna-lab.bsky.social · 27/04/2026
We present VIPR, a phage-encoded RNA-guided system that recognizes DNA with a noncontiguous code unlike CRISPR. Tiny, programmable, possibly ancestral to CRISPR immunity; VIPR is built around a striking RNA-DNA-DNA triplex.
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Pilhofer Lab 🦠❄️🔬 @pilhoferlab.bsky.social · 26/04/2026
📜The final version of our paper on eCIS firing is out: www.nature.com/articles/s41... Congrats to @xujwet.bsky.social @chipericson.bsky.social #cryoEM #CIS
nature.com
Stepwise firing mechanism of an extracellular contractile injection system - Nature Communications
Bacterial contractile injection systems (CIS) mediates cell-cell contacts, but the firing mechanism is unclear. Here, the authors employ a multimodal cryoEM approach and structure guided engineering t...
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Basil Greber @bjgreber.bsky.social · 26/04/2026
The early release version of our #cryoEM work on CDK11-cyclin L-SAP30BP has now been published at Nature Communications: www.nature.com/articles/s41... We got very helpful comments from the reviewers and added more structural analysis and biochemistry to support our conclusions. Please have a look!
nature.com
Cryo-EM structures of the CDK11-cyclin L-SAP30BP complex reveal mechanisms of CDK11 regulation - Nature Communications
McGeoch and co-authors use cryogenic electron microscopy and biochemistry to determine the structure of the CDK11-cyclin L-SAP30BP complex and elucidate the regulation of CDK11 by SAP30BP within the t...
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Helena Watson @helenawatson.bsky.social · 25/04/2026
Preprint 🧵! I’m really excited to introduce BIGSMALL, an interleaved multi-magnification cryo-ET scheme bridging molecular and cellular scales in a single acquisition! BIGSMALL = 𝐁road 𝐈nformation 𝐆athering 𝐒trategy by 𝐌ultiscale 𝐀cquisition of lame𝐋𝐋a www.biorxiv.org/content/10.6... (1/6)
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Wilson Lab @wilsonlab.bsky.social · 25/04/2026
www.nature.com/articles/s41...
nature.com
The regulation, function and disease relevance of cytoplasmic tRNAs - Nature Reviews Molecular Cell Biology
This Review discusses the expression and maturation of human cytoplasmic tRNAs and recent insights into their regulation of translation. The authors also explore emerging roles of tRNAs in ribosome-as...
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Pujuan Poppy Deng @poppy-pujuan-deng.bsky.social · 16/04/2026
I am so excited to share our new findings with you! We provide the structural evidence for a direct protein-to-DNA information pathway, showing how a bacterial enzyme 'reads' its own structure to 'write' DNA. www.science.org/doi/10.1126/...
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Ben Engel @cellarchlab.com · 14/04/2026
Across scales from cells🦠 to atoms⚛️ – We reveal how anaerobic #bacteria break down very stable aromatic compounds found e.g. in oil spills 🛢️ #Bioremediation #TeamTomo 🧪 🧶🧬 🔬 Awesome collab with Lena, Matthias, @schullerjm.bsky.social @rnfr2d2.bsky.social @tomaspascoa.bsky.social @tamb-o.bsky.social
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Ahmad Jomaa @jomaalab.bsky.social · 27/03/2026
A very exciting day-our work on the mechanism of AMD1 stalling is also out today, a great collaboration with the Baranov and Yordanova labs at UCC! Huge congratulations to Emir, first author on both papers! www.science.org/doi/10.1126/...
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Ahmad Jomaa @jomaalab.bsky.social · 27/03/2026
Check out the final version of this work, out today! @natcomms.nature.com www.nature.com/articles/s41...
nature.com
A molecular switch in NAC prevents mitochondrial protein mistargeting by SRP - Nature Communications
How ribosome-bound NAC distinguishes mitochondrial precursors from ER clients has remained unclear. Here, authors reveal a molecular switch in NAC that limits SRP access to nascent mitochondrial precu...
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Uday Tak @snowkaryote.bsky.social · 27/03/2026
Happy to share the final version of my postdoc work on bacterial CBASS immunity with @aaronwhiteley.bsky.social published in @cp-cellhostmicrobe.bsky.social www.cell.com/cell-host-mi...
cell.com
Bacterial 2′,3′-cGAMP activates a SAVED effector to form membrane-disrupting filaments and restrict phage replication
Tak et al. discover that bacteria use 2′,3′-cGAMP, the same signaling molecule employed by mammalian cGAS-STING, for phage defense. In response to phage, 2′,3′-cGAMP activates filament formation of Ca...
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Basil Greber @bjgreber.bsky.social · 27/03/2026
Have a look at our latest results on #CDK regulation, just posted as a pre-print! This study was spearheaded by PhD student Amy McGeoch. Amy has determined the #cryoEM structure of the CDK11-cyclin L-SAP30B complex, an important regulator of #spliceosome activation. www.biorxiv.org/content/10.6...
Depictions of the structure of CDK11-cyclin L-SAP30BP. Four cryo-EM densities are shown at the top, two molecules models at the bottom. CDK11 is green, cyclin L is purple, and SAP30BP is yellow.
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Kelly Nguyen @kellythd-nguyen.bsky.social · 26/03/2026
Proud to share the yeast telomerase structure, led by the talented @hongmiaohu.bsky.social in collaboration with the Wellinger and Chartrand labs. Discovered 37 years ago and took us nearly 7 years but totally worth the wait 😍. www.science.org/doi/10.1126/... www.youtube.com/watch?v=gFE4...
youtube.com
Cryo-EM structure of yeast telomerase
YouTube video by MRC Laboratory of Molecular Biology
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Yasin Dagdas @plantophagy.bsky.social · 25/03/2026
Congrats Milica @alessandrick.bsky.social & everyone @gekaragoz.bsky.social lab. Glad we could contribute to this awesome story on #UFMylation & #RQC crosstalk @embojournal.org link.springer.com/article/10.1...
link.springer.com
The coordinated action of UFMylation and the RQC pathways clears arrested polypeptides at the ER - The EMBO Journal
Clearance of arrested nascent polypeptides resulting from ribosomal stalling is essential for proteostasis. Stalled endoplasmic reticulum (ER)-bound ribosomes are marked by ubiquitin-fold modifier 1 (...
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