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James A. Letts

@lettsscience.bsky.social
124 followers 221 following 17 posts
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Reposted by James A. Letts
Janet Iwasa @jiwasa.bsky.social · 09/09/2026
Interested in molecular animation? Give ProteinBlender a try! It's free and open source. animation-lab.github.io/ProteinBlend... The latest tools include a DNA builder (shown in the tutorial video below). We'd love to hear what you think! We have short tutorials that cover all the features!
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Protein Data Bank in Europe (PDBe) @pdbeurope.bsky.social · 25/08/2026
🚀 New updates improve metalloprotein data across the PDB Archive. ~15,500 PDB entries and ~900 metal-containing CCDs now feature more complete chemical descriptions and metal coordination annotations. ⬇️More ⬇️ www.wwpdb.org/news/news?ye... #PDB
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ISEP @isepprotists.bsky.social · 23/08/2026
New #ISEPpapers #Preprint! #CRISPR / Cas9 #GeneEditing in the heterotrophic protist #Acanthamoeba castellanii www.biorxiv.org/content/10.6... #Protists #Microbes #Parasites #ProtistsOnSky
microscopic pictures of microbial cells
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Toni Gabaldón @tonigabaldon.bsky.social · 10/06/2026
Our paper "Gene ancestries reveal diverse microbial associations during eukaryogenesis.” is finally out in Nature. Eukaryogenesis was likely a gradual process shaped by multiple microbial partners and virus-mediated gene transfer, rather than a single binary symbiosis. doi.org/10.1038/s415...
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Structura Biotechnology @structurabio.bsky.social · 17/08/2026
🚀 Preprint alert: cFAR and Relative Signal: Diagnosing Preferred Orientation in Single-Particle #CryoEM Explore how cFAR, tFAR, and Relative Signal provide complementary diagnostics for preferred orientation, tested across 14 #EMPIAR datasets and compared with established metrics 👉 bit.ly/4wBY1Ev
cFAR and Relative Signal: Diagnosing Preferred Orientation in Single-Particle CryoEM
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Jamie Blaza @jnb-lab.bsky.social · 17/08/2026
Our preprint is now published!
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Das Lab @rdaslab.bsky.social · 18/08/2026
Finally, 3D #cryoEM structure of a nucleotide polymerizing #RNA that copies #RNA to #RNA: tC19z, evolved at @mrclmb.ac.uk 15 y ago! www.biorxiv.org/content/10.6... @szokoli.bsky.social Jason Hingey, Dan Haack, Vivian Wu Nick Spellmon @navtejtoor.bsky.social @hhmijanelia.bsky.social
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Reposted by James A. Letts
Julia Meltzer @juliameltzer.bsky.social · 13/08/2026
Excited to share what I've been working on with an incredible team! Visualisation of Asgard viruses on cell surfaces and vesicles, and a story of complex viral interactions. Preprint: www.biorxiv.org/content/10.6... @brendanburns999.bsky.social @belindaferrari.bsky.social @xabivc.bsky.social
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cryoEM papers @cryoempapers.bsky.social · 14/08/2026
Conformational gating at histidine junctions coordinates proton translocation in respiratory complex I www.biorxiv.org/content/10.64898/2026.08.12.744383v1 #cryoEM
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ISEP @isepprotists.bsky.social · 14/08/2026
New #ISEPpapers! An endogenous energy-metabolizing organelle www.cell.com/current-biol... #Protists #Microbes #Organelles #Evolution
a schematic picture summarizing an evolutionary scenario about the origin of the organelles discussed in the paper
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John F. Allen @profjohnallen.bsky.social · 07/08/2026
Why a Chloroplast Needs Its Own Genome Tethered to the Thylakoid Membrane—Co‐Location for Redox Regulation - Allen - 2026 - BioEssays - Wiley Online Library onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Why a Chloroplast Needs Its Own Genome Tethered to the Thylakoid Membrane—Co‐Location for Redox Regulation
A schematic outline of chloroplast DNA tethered to two stacked thylakoids that contain the components of photosynthetic electron transport. Green shapes represent proteins encoded in chloroplast DNA;...
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Reposted by James A. Letts
Matt Johnson @drmatthewcjohnson.bsky.social · 11/08/2026
Interested in a career in industry cryoEM? We're hiring! We seek a cryoEM/cryoET expert to join our team at Genentech advance our mission to provide high-resolution structural insights into biological macromolecules involved in health and disease. Apply at: careers.gene.com/us/en/job/20...
careers.gene.com
Systems Specialist II in South San Francisco, California, United States of America | Manufacturing & Engineering at Genentech
Apply for Systems Specialist II job with Genentech in South San Francisco, California, United States of America. Manufacturing & Engineering at Genentech
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Plant Science Spotlight @plant-sci.bsky.social · 11/08/2026
🧬🌱 Algal chloroplast ribosomes have a unique arm domain, revealed by cryo-ET and cryo-EM. It may stabilize mRNA and organize polysomes. Chloroplast translation is more structurally diverse than expected. #plantscience @natplants.nature.com www.nature.com/articles/s41...
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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Bob Wong @bbmwong.bsky.social · 11/08/2026
Are you an ecologist/evolutionary biologist looking for an ongoing academic position? Monash University’s School of Biological Sciences is hiring! Come join us in Melbourne, Australia! Details here: careers.pageuppeople.com/513/cw/en/jo...
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Jamie Blaza @jnb-lab.bsky.social · 10/08/2026
Permanent academic position as a Lecturer in cryo-ET open at York. We are looking for someone to lead a research program making the most of the stunning advances occurring in cryo-ET. It's a research and teaching post but with a focus on research in the early years. jobs.york.ac.uk/vacancy/lect...
jobs.york.ac.uk
Jobs - The University of York
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Dan Starr @danstarrucdavis.bsky.social · 04/08/2026
I am honored. So many of my scientific heroes are ASCB fellows. Thanks to my nominators, my mentors, and to UC Davis ASCB fellows Mark Winey, Jon Scholey, and Jodi Nunnari. But thanks most to all those who have done science with me, @gwgl.bsky.social and all the graduate students and postdocs
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Ryan Hylton @rkhylton.bsky.social · 27/07/2026
One cell, one tomogram! Our montage tomography workflow, MOSAIC, is out in Structure, and MontageMaker is on GitHub! MOSAIC: www.cell.com/structure/fu... MontageMaker: github.com/MPI-Dortmund... Big thanks to @maikaboiero.bsky.social, Adriana Prajica, Gavin Rice, and @raunser-lab.bsky.social!
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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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Brett Baker @archaeal.bsky.social · 23/07/2026
www.science.org/doi/10.1126/...
science.org
Eukaryotic-like microtubules and dynamic instability of Asgard archaeal tubulins
Asgard archaeal mini microtubules suggest an archaeal origin of eukaryotic microtubules.
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Leah @hoxinsocks.bsky.social · 22/07/2026
#TubulinTuesday!
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Quanta Magazine @quantamagazine.org · 17/07/2026
The mitochondria are the powerhouse of the cell — and according to biologist Martin Picard, they’re also the link between biology, health, and the mind. In other words, the foundation of our experience being alive. www.quantamagazine.org/martin-picar...
quantamagazine.org
Martin Picard’s Mitochondrial Theory of Mind | Quanta Magazine
The biologist’s bold “energetic view of life” looks to the body’s strangest organelles as the link between cells, health, and mind and the foundation of our experience of being alive.
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Bil Clemons @profbilc.bsky.social · 13/07/2026
I'm excited to announce a new preprint from the lab just posted to bioRxiv: “Retrograde trafficking inhibitors allosterically trap Get3 to block tail-anchored protein biogenesis.” www.biorxiv.org/content/10.6...
The structure of Human Get3 with the inhibitor Retro-2 bound in complex with Get4.
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Max Planck Institute of Biophysics @mpibp.bsky.social · 13/07/2026
How do 2 meters of DNA fit inside a nucleus you can barely see? 🧬 Our new study mapped individual nucleosomes inside human cells.
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Sophia Paul @sophia-pa.bsky.social · 08/07/2026
Excited to share my paper! 🥳 Today in #Nature we reveal an 8 MDa Hdr electron bifurcating super-assembly in class I methanogens that couples the first and last steps of hydrogenotrophic methanogenesis. A lineage-specific adaptation to anaerobic niches. www.nature.com/articles/s41...
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trisre.bsky.social @trisre.bsky.social · 06/07/2026
1/ Happy to share our preprint! The Mtr complex catalyses the second-to-last step of the methanogenesis and is an essential bioenergetic machine in most methanogenic archaea. Anaerobic cryo-EM of Mtr reveals a nitrogenase-like metallocluster bound at its active site! www.biorxiv.org/content/10.6...
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John Rubinstein @johnrubinstein.bsky.social · 06/07/2026
CryoSPARC workshop in Toronto! Beyond consensus refinements: Advanced cryo-EM data processing with CryoSPARC Sept 24-25, 2026 (part of the Canadian Cryo-EM Nexus) Register here: cvent.me/dL1wem Please see details in the link or the image Alt text @structurabio.bsky.social @sickkidsto.bsky.social
Workshop announcement graphic shows a classroom scene with the CryoSPARC logo and workshop title, date, and hosting organizations (SickKids and Structura Biotechnology)

Workshop information:
As part of the Canadian Cryo-EM Nexus, The Hospital for Sick Children (SickKids) and Structura Biotechnology are pleased to announce a two-day CryoSPARC workshop:

Beyond consensus refinements: Advanced cryo-EM data processing with CryoSPARC

at SickKids in Toronto on September 24-25, 2026.

Led by experts from Structura, this workshop offers a unique opportunity for participants who already have a sound understanding of cryo-EM and substantial CryoSPARC experience to deepen their skills and become a key resource for cryo-EM image analysis within their institutions.

There is $115 (CAD) charge to partially defray some of the costs of running the workshop, which is sponsored by SickKids and Structura. Attendees will need to bring their own laptop computer and arrange for travel and accommodation.
Please apply before July 24, 2026 using the following link:
https://cvent.me/dL1wem
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Ben Engel @cellarchlab.com · 07/05/2025
“The Website” is here! It can be intimidating getting into analysis of #CryoET data, and software is evolving all the time👩‍💻🚀. @phaips.vd.st & @florentwaltz.bsky.social put our lab’s workflows into an online guide. We hope this helps lower the bar to joining #TeamTomo. Feedback much appreciated! 🧪🧶🧬🔬
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Ricard Solé @ricardsole.bsky.social · 12/06/2026
How did complex cells emerge? In this groundbreaking paper, @tonigabaldon.bsky.social & co show that eukaryotes arose through multiple waves of ancient genetic exchange involving diverse bacteria (& giant viruses!) revealing a far more complex origin than we imagined. www.nature.com/articles/s41...
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James A. Letts @lettsscience.bsky.social · 11/06/2026
Exciting work from the Maldonado lab (formerly of @ucdavis.bsky.social , now at @monashuniversity.bsky.social) The first structure of Photosystem I from giant kelp! www.monash.edu/news/article...
monash.edu
New research suggests giant kelp could inspire innovative climate solutions
New research reveals the microscopic machinery that helps giant kelp turn sunlight into energy, providing inspiration for innovative new climate solutions.
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Allegretti Lab @matteoall.bsky.social · 27/05/2026
We're happy to announce our new preprint! 🐸 easymode: general pretrained networks for cellular cryo-ET. Segment ~20 cellular features – ribosomes, microtubules, mitochondria, nuclei & more – with zero model training. 🔗 doi.org/10.64898/202... 🧵👇
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Nature @nature.com · 26/05/2026
Nature research paper: Early fossil eukaryotes were benthic aerobes go.nature.com/3Rdw9rk
go.nature.com
Early fossil eukaryotes were benthic aerobes - Nature
Integrated palaeontological, sedimentological and geochemical analyses of ancient rocks from Australia show that early eukaryotes were largely restricted to oxygenated benthic habitats, probably possessed mitochondria by 1.75 billion years ago, and may have expanded into planktonic habitats much later, perhaps during the Neoproterozoic era.
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FEBS Letters @febsletters.bsky.social · 26/05/2026
🔔Our latest special issue, guest edited by Dr. Panagiotis L. Kastritis, is now live! 🧊 Eight reviews explore the role of cryo-EM in understanding diverse complexes, painting a picture of a field moving toward greater understanding of metabolic architecture. ❄️ tinyurl.com/FEBSCryoEM
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Structura Biotechnology @structurabio.bsky.social · 21/05/2026
cryosparc-tools is a standalone Python library that connects to #CryoSPARC and is designed to advance your #cryoEM data processing via scripting. 🚀 Watch this new video for an overview of cryosparc-tools, and explore the resources linked in the description 👉 youtu.be/QY7t67c9bQ8
youtu.be
CryoSPARC Tools: Simple scripting for advanced cryo-EM processing
YouTube video by Structura Biotechnology Inc.
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Ben Larson @blarson.bsky.social · 19/05/2026
And now it's out! Happy that PNAS selected for the cover this SEM image snapped by @samjlord.bsky.social, one of the most evocative visualizations of Euplotes that I have ever encountered. www.pnas.org/doi/10.1073/... Stay tuned for what is shaping up to be some fascinating follow-up in the lab...
Scanning electron microscopy image of the ciliate Euplotes gigatrox on the cover of the journal PNAS. Distinct punk rock vibes
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Carter Lab @carter-lab.bsky.social · 05/05/2026
Our story on RNA recognition by Egl-BicD is now published! Also delighted to share the accompanying News & Views article by Florence Besse and Andres Ramos, which beautifully highlights the work. Paper: www.nature.com/articles/s41... News & Views: www.nature.com/articles/s41...
nature.com
Structural basis for recognition of diverse localizing mRNAs by Egl–BicD - Nature Structural & Molecular Biology
Singh et al. combine cryo-electron microscopy and functional studies to reveal how a single protein complex selects diverse mRNAs for subcellular localization using a combination of shape, positional ...
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MRC Laboratory of Molecular Biology @mrclmb.ac.uk · 05/05/2026
The hidden rules behind mRNA transport. A collaborative study between @simonbullock11.bsky.social & @carter-lab.bsky.social’s groups has found a structural code that explains how cells selectively transport mRNAs. Read more: mrclmb.ac.uk/news-events/... #LMBNews @cellbiol-mrclmb.bsky.social 🧪
Structural representation of the Egl-BicD-dynein-dynactin complex transporting an mRNA molecule along a microtubule, with a magnified inset of the Egl-BicD-RNA structure.
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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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Leah @hoxinsocks.bsky.social · 14/08/2025
If you're in the Milwaukee area (including Chicago...), come visit the models! When teachers aren't here for summer workshops, they get so lonely... And you must talk to them. Tell them they are pretty models, and good models. (Just ask for a tour at 3dmoleculardesigns.com/contact-us) #3dThursday
A table full of models showing tRNA, ribosomes, and associates. (And also a GLP-1 receptor and a handful of water molecules, because everybody's gotta be somewhere.) Behind the table is a "Life is Complicated" poster, and in the distance is a wall display holding more models.5 display shelves loaded with all sorts of molecular models. Some molecules are hanging from the ceiling.More shelves packed with models. So many models.Four more shelves, and a couple tables, showing even more molecular models. And no, these pictures do not show all the models in the building.
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The Rockefeller University @rockefeller.edu · 22/04/2026
How do cells convert mechanical information into a molecular process? The @alushinlab.bsky.social has captured the first snapshot of a mechanical signaling complex in action, findings in @nature.com that have implications for disorders related to myosin dysfunction. 🔗: bit.ly/41Kshjw
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Xavier Trepat @xaviertrepat.bsky.social · 17/04/2026
Our latest work on shape-programmable tissues is out in @science.org. By positioning topological defects in cellular nematics, we encode frustrated 2D force fields that relax into predictable 3D shapes. Collaboration with Marino Arroyo’s lab, led by @pauguillamat.bsky.social at @ibecbarcelona.eu.
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Royal Society of Biology @rsb.org.uk · 17/04/2026
Are you looking for a training course that will provide you with an introduction to cryoEM and its applications in structural biology ? Then join us in July! 📆 Tues 7 Jul, 9:30-16:30, University of Leicester Book your place: my.rsb.org.uk/item.php?eve... #Training #CryoEM
A 3D model of DNA. Text says RSB training, an introduction to CryoEM, Tuesday 7 July, 9:30-16:30, The University of Leicester
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Chancie T @chanciet.bsky.social · 16/04/2026
Our paper on the proton-driven secondary active #transporter SbmA for antimicrobial peptides is finally out! We used #cryoEM, #EPR, #MD to show that it resembles and undergoes conformational changes like #ABC transporter TMDs consistent with an alternating-access transport mechanism.
doi.org
Shared structural mechanisms of alternating access between the secondary peptide transporter SbmA and ABC transporters - Nature Communications
SbmA is a proton-driven transporter that imports antimicrobial peptides andstructurally resembles the transmembrane domain of ABC-transporters. Here, authors show through cryo-EM structures, EPR spect...
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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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ISEP @isepprotists.bsky.social · 14/04/2026
New #ISEPpapers #preprint by @deemteam.bsky.social: Re-evaluating the eukaryotic Tree of Life with independent phylogenomic data www.biorxiv.org/content/10.6... #Protists #Microbes #Evolution #Eukaryotes #TreeOfLife #Phylogeny #Phylogenomics #Bioinformatics #Algae
a simplified evolutionary tree of eukaryotes with pictures of various microbes
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Anuj @rnfr2d2.bsky.social · 14/04/2026
How do “LEGO-like” electron-bifurcating modules combine to drive degradation in BTEX-contaminated ecosystems? Check out our latest preprint, where we use cryo-EM and cryo-ET to reveal how the 1 MDa BCRII complex powers extremely endergonic aromatic ring reduction. www.biorxiv.org/content/10.6...
biorxiv.org
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Debnath Ghosal @debnathghosal.bsky.social · 12/04/2026
One of biggest mysteries in biology: how did complex eukaryotic cells evolve from simple microbes? ~1.8 billion years ago, an archaeal cell likely merged with a bacterium to form the first eukaryotic cell, but can we ever find direct evidence of this transformative event? 🦠 🚶‍♂️
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John Rubinstein @johnrubinstein.bsky.social · 21/03/2025
Now published J. Med. Chem! @zestytoast.bsky.social's structure of type II NADH dehydrogenase from mycobacteria. A promising drug target for TB & other mycobacterial infections, Yingke demonstrates how an inhibitor can block transfer of electrons from NADH to the ETC. pubs.acs.org/doi/full/10....
pubs.acs.org
Structure of Mycobacterial NDH-2 Bound to a 2-Mercapto-Quinazolinone Inhibitor
Mycobacterial type II NADH dehydrogenase (NDH-2) is a promising drug target because of its central role in energy metabolism in Mycobacterium tuberculosis and other pathogens, and because it lacks a k...
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Justin Di Trani @justinditrani.bsky.social · 28/02/2026
In the first preprint from the lab, @sandaru-ileperuma.bsky.social demonstrates that the P. aeruginosa NQR complex supports virulence factors and identifies inhibitors of this complex. He also uncovered some interesting NQR dynamics controlled at the substrate binding site. tinyurl.com/yush599n
tinyurl.com
Discovery of inhibitors of the Pseudomonas aeruginosa NADH:ubiquinone oxidoreductase (NQR) that hinder virulence factors
The growing threat of antimicrobial resistance has created an urgent need to identify novel therapeutic targets in bacteria. The NADH:ubiquinone oxidoreductase (NQR) is a potential target in a number of bacteria that transfers electrons from NADH to ubiquinone while pumping ions from the cytoplasm to the periplasm. In most species, this complex pumps sodium ions, whereas in Pseudomonas aeruginosa it pumps protons, thereby functioning as a member of the electron transport chain. Using a strain of PAO1 with the NQR knocked out, we demonstrate that the NQR complex plays a crucial role in the motility and biofilm development virulence factors in P. aeruginosa. We develop and execute a high-throughput inhibitor screen to identify and confirm compounds that inhibit NADH oxidation by this complex. Using single-particle cryogenic electron microscopy (cryoEM), we determine high-resolution structures of the NQR complex, both inhibitor-free and bound to one of the confirmed hits from our screen, demonstrating that it binds to the ubiquinone binding site. These structures provide insight into conformational dynamics controlled by binding at the ubiquinone site, with potential implications for the coupling between electron transfer and proton pumping in this complex. Biofilm development and motility assays with selected compounds from the screen show that they affect these virulence factors similarly to the NQR knockout. ### Competing Interest Statement The authors have declared no competing interest. Cystic Fibrosis Canada, https://ror.org/05b6dcx13 LKSIoV and University of Alberta Faculty of Medicine and Dentistry Startup funding Striving for Pandemic Preparedness – The Alberta Research Consortium Canada Research Chairs Canadian Institutes of Health Research, https://ror.org/01gavpb45 LKSIoV Research Support and Innovation Grant
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Caitie McCafferty @computingcaitie.bsky.social · 08/04/2026
I am excited to share our most recent work collaborating with @centriolelab.bsky.social and @stearnslab.bsky.social to look at the ciliary base of mammalian multiciliated cells w/ cryo-ET, XL/MS, and U-ExM www.biorxiv.org/content/10.6...
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RCSB Protein Data Bank @rcsbpdb.bsky.social · 01/04/2026
April's Molecule of the Month: Insect Odorant Receptors These protein complexes allow insects to detect a wide variety of volatile compounds, from clove oil to DEET
pdb101.rcsb.org
PDB101: Molecule of the Month: Insect Odorant Receptors
Protein complexes that allow insects to detect a wide variety of volatile compounds
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