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Osterman Ilya

@ostermanilya.bsky.social
459 followers 348 following 119 posts

Group Leader at EMBL Hamburg. www.embl.org/groups/osterman

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Reposted by Osterman Ilya
Sternberg Lab @sternberglab.bsky.social · 28/09/2026
1/13 — New pre-print from the Sternberg Lab in collaboration with Leifu Chang's Lab! TnpB nucleases have repeatedly given rise to TldRs, nuclease-dead RNA-guided transcription factors. Here we define the biological role of one TldR clade in its native host. Story: www.biorxiv.org/content/10.6...
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Reposted by Osterman Ilya
Maya Voichek @mayavoichek.bsky.social · 24/09/2026
Super excited to share my postdoctoral work at @imbavienna.bsky.social @viennabiocenter.bsky.social - We discovered that some retrotransposons, or "jumping genes" 🧬, are able to spread from cell to cell via a new viral infectivity route. A short thread: 🧵👇 (1/7)
AI-generated illustration of the soma-to-germline transmission of retrotransposons described in our work
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Duerkop Lab @duerkoplab.bsky.social · 23/09/2026
Better late than never. Congrats to former PhD trainee Shelby Andersen on the publication of RADS. RADS identifies antiphage defense systems connected to small serine recombinases. The question remains, why are defense systems often placed in this context? 🤔 journals.plos.org/plosbiology/...
journals.plos.org
Small serine recombinases are markers for antiphage defense system discovery
Identifying antiphage defense systems is challenging for bacterial species where such systems are understudied. This study describes a bioinformatic pipeline that uses a small serine recombinase as a ...
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Tominaga K. (tomiken) @pacyc184.bsky.social · 23/09/2026
A phage DUF669 protein mediates post-cleavage DNA repair against host CRISPR immunity | Nature Communications
nature.com
A phage DUF669 protein mediates post-cleavage DNA repair against host CRISPR immunity - Nature Communications
Using affinity purification-mass spectrometry, these authors identified the Healer system, a phage two-protein effector that repairs CRISPR-mediated DNA breaks via homologous recombination.
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Malcolm White @mfwhite2.bsky.social · 21/09/2026
New preprint from PhD student Yu Sun. TSR1 is a TIR effector specialised for CRISPR defence. It is an obligate dimer activated by cA3 and degrades its own activator using a ring nuclease domain. Perhaps the first confirmed dimeric TIR effector? www.biorxiv.org/content/10.6...
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Reposted by Osterman Ilya
Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 19/09/2026
BFVD v3 contains 5.8M viral protein structures, 16× more than v2; 75% high quality, filling a major gap in AFDB coverage. It fully covers 72.6% of reference proteomes and spans 72.7% of ICTV species. Great work by @eunbelivable.bsky.social et al. 📄 www.biorxiv.org/content/10.6... 🌐 bfvd.foldseek.com
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Reposted by Osterman Ilya
Malcolm White @mfwhite2.bsky.social · 16/09/2026
Our paper on type II Panoptes is now published at PLOS Biology with new data on phage escapers - quite a step up in microbiology for our lab, led by Sabine Gruschow. Thanks to @erc.europa.eu for funding dx.plos.org/10.1371/jour...
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Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 13/09/2026
Fold Spacer lets you fly through protein structures (Weekend project #2). It’s my first game: I originally set out to build a racer with structures as the tracks, but was a little too crazy. So it became this instead. You can upload your own structures. 🌐 martin-steinegger.github.io/Fold-Spacer/
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Osterman Ilya @ostermanilya.bsky.social · 12/09/2026
Congratulations to @francoisrousset.bsky.social and colleagues, who discovered NIR—“NADase in bacterial immunity and vault ribonucleoproteins”—a new NAD⁺-depleting domain! NAD⁺ is involved in defense yet again, while its reconstitution by NARP1 was shown to help phages overcome this defense :)
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Mart Krupovic @mkrupovic.bsky.social · 11/09/2026
Why did some #viruses evolve to be #giants while others did not? Our perspective piece on this topic with Eugene Koonin. www.pnas.org/doi/10.1073/...
pnas.org
Why did some viruses evolve to be giants while others did not? | PNAS
Viruses are ubiquitous mobile genetic elements that are obligate symbionts of cellular life forms and replicate exclusively within host cells. The ...
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Ellinor Alseth @ellinoralseth.bsky.social · 11/09/2026
It's finally published! What a journey @brownlab.bsky.social and I have been on with this one (ask me about it over a pint 🍻). Super excited to be able to say that it's finally out in Trends (author gift link to follow)! 🦠🧫 #phagesky
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artemisaev.bsky.social @artemisaev.bsky.social · 11/09/2026
Chromatin structure controls defense island expression! Why do some systems defend on plasmids but fail natively? H-NS is key. Removing it boosts defense and overcomes anti-defense proteins but raises toxicity. Common lab strains still hide novel immunity modules! www.biorxiv.org/content/10.6...
biorxiv.org
H-NS silences antiviral immunity through 3D chromatin compaction
Bacterial antiviral immunity systems can be toxic to their hosts and must be tightly regulated. Immunity genes are often encoded by AT-rich mobile genetic elements subjected to silencing by nucleoid b...
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Reposted by Osterman Ilya
François Rousset @francoisrousset.bsky.social · 08/09/2026
🚨 We are excited to share the first preprint of our lab ! We discovered an NADase enzymatic domain in bacterial immunity and in the human protein TEP1. www.biorxiv.org/content/10.6...
biorxiv.org
A widespread NADase domain links bacterial immunity with human TEP1
Recent discoveries on bacterial immunity have revealed that several protein domains involved in anti-phage defense are conserved in eukaryotes, such as SIRim, TIR, PNP and gasdermin. Bacterial immune ...
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Reposted by Osterman Ilya
Tatta Bio @tattabio.bsky.social · 04/09/2026
UniProt is where most researchers start when they want to understand a protein. As of today, prokaryotic entries there will show something new: genomic context, powered by SeqHub, right in the Sequence section of the page.
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Osterman Ilya @ostermanilya.bsky.social · 02/09/2026
Bacterial ribosomes can synthesize proteins encoded within their own RNA - WOW🔥 Very elegant and inspiring work from Shura Mankin's lab - Congratulations! www.nature.com/articles/s41...
nature.com
Rewiring the ribosome to translate proteins encoded in its own RNA - Nature
Bacterial ribosomes can synthesize proteins encoded within their own RNA.
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Reposted by Osterman Ilya
Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 30/08/2026
Run AlphaFold2 locally in your browser via WebGPU, no installation needed, it's just a static webpage using your own GPU or CPU. Short proteins run in seconds. Larger ones are still slow: a 291-aa protein takes ~7 minutes on my M4 Pro. ❗It's just a PoC. 🌐 martin-steinegger.github.io/alphafold2-w...
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Martial Marbouty @mmarbout.bsky.social · 30/08/2026
🚨 ‼️ NEW PUBLICATION ‼️ While we start to know a lot about how bacterial genomes are organized in 3D, almost nothing is known about phage genome once it enters a bacterial cell. read the paper here: www.science.org/doi/10.1126/...
science.org
Bacteriophage PAK_P3 genome structuration and dynamics during infection of Pseudomonas aeruginosa reveal specific interaction patterns
While the dynamic changes in genome organization in cellular organisms have been well described, the three-dimensional (3D) folding of phage genomes during the infection of their host is extremely lim...
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Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 26/08/2026
Foldseek-Interface enables fast search/clustering of the protein interface universe! We clustered 3.1M PDB dimers into 77,167 groups and found new interfaces keep appearing even as fold discovery plateaus. 🧵 📄 www.biorxiv.org/content/10.6... 🔎 search.foldseek.com/interface 🌐 interface.foldseek.com
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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 25/08/2026
A phage communication peptide alters Bacillus subtilis colony development and promotes sporulation www.biorxiv.org/content/10.64898/20…
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Reposted by Osterman Ilya
Carina de Oliveira Mann @oliveiramann.bsky.social · 21/08/2026
@indrabekere.bsky.social probed a nucleotide library from bacterial & invertebrate signaling molecules in human cells, looking for new signaling. A great tool for mapping STING's preferences across cyclic nucleotides, incl. pyrimidine-purine hybrids.
cell.com
STING agonist profiling by nucleotide library defines structural determinants of cyclic dinucleotide recognition
Biochemistry; Genetics; Molecular structure
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Reposted by Osterman Ilya
Typas Lab @typaslab.bsky.social · 20/08/2026
Excited to share our paper with @savitski-lab.bsky.social, led by @tarabartolec.bsky.social, Karin Mitosch & Clément Potel, out now in @nature.com. We show that T7 phage broadly disables bacterial defenses using a unique ‘loose cannon’ protein kinase. www.nature.com/articles/s41...
nature.com
Pervasive phosphorylation by phage T7 kinase disarms bacterial defences - Nature
The T7 bacteriophage deactivates bacterial defence systems through T7K phosphorylation of nearly all host and phage proteins during infection.
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Savitski Lab @savitski-lab.bsky.social · 20/08/2026
1/5 How much phosphorylation can a single kinase deposit? In our new study with @typaslab.bsky.social out in @nature.com, phage T7's kinase (T7K) modifies almost all the E. coli proteome + more densely than all ~500 kinases do our own proteomes 🤯 www.nature.com/articles/s41...
nature.com
Pervasive phosphorylation by phage T7 kinase disarms bacterial defences - Nature
The T7 bacteriophage deactivates bacterial defence systems through T7K phosphorylation of nearly all host and phage proteins during infection.
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A. baumannii @acinetobacter-amr.bsky.social · 16/08/2026
pubmed.ncbi.nlm.nih.gov/42578370/
pubmed.ncbi.nlm.nih.gov
Discovery and biosynthesis of a novel diaminopropane-modified thymine in phage DNA - PubMed
Bacteriophage genomes exhibit exceptional diversity in nucleotide modifications, which primarily function to counteract host defense systems. However, the diversity of phage DNA hypermodifications remains largely unexplored in post genome era. Here, we discovered a novel thymine hypermodification, α …
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Reposted by Osterman Ilya
Ben Morehouse @benmorehouse.bsky.social · 12/08/2026
Today we are excited to introduce you to PanDA 🐼🐼🐼, a newly uncovered antiphage system!! Attendees at @SISB2026 would have heard a little about this from graduate student Ali Nabhani back in May, but we are now out here in preprint form and delighted to share more of the details. (Thread below)
biorxiv.org
Minimal diadenylate cyclases have been co-opted to detect phage immune evasion
Many bacterial immune defenses transmit recognition of phage infection via the generation of diverse cyclic nucleotide second messengers. Phage have evolved to subvert this kind of immunity by sequest...
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Ady Ragucci @aragucci.bsky.social · 12/08/2026
Excited to share our story on diadenylate cyclases in bacterial immunity! Building on the discovery of Panoptes, we present Panoptoo: a DAC operon that uses cUA to guard against phage infection. Grateful to @daniellehaley.bsky.social and @kranzuschlab.bsky.social www.biorxiv.org/content/10.6...
biorxiv.org
Bacterial diadenylate cyclase domains synthesize diverse nucleotide signals in anti-phage defense
Bacterial diadenylate cyclase (DAC) enzymes synthesize the nucleotide signal 3′3′ cyclic di-AMP (3′3′-c-di-AMP) to control osmoregulation, cell-wall homeostasis, and DNA-damage responses. Here we disc...
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Reposted by Osterman Ilya
Kranzusch Lab @kranzuschlab.bsky.social · 12/08/2026
The shared principles of human and bacterial antiviral immunity An honor to highlight remarkable discoveries from many labs over the past 12 years that unite previously disparate fields of how animal cells and prokaryotes defend against viruses. www.nature.com/articles/s41... rdcu.be/fzwyB
nature.com
Shared principles of human and bacterial antiviral immunity - Nature
The Review describes shared ancient, conserved mechanisms between human antiviral immunity and bacterial anti-phage systems, outlining universal principles of pathogen sensing, signalling and effector...
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Jens Hör @jenshoer.bsky.social · 10/08/2026
Do you need to analyze bacterial microscopy data and are looking for an all-in-one tool for Windows or macOS? Check out BactoMate by Lasse Hallenga and Philipp Popp! I'm happy that we were able to contribute to this great work. www.biorxiv.org/content/10.6...
biorxiv.org
BactoMate: an integrated platform for reproducible bacterial microscopy analysis
Quantitative microscopy of microorganisms increasingly produces large, multidimensional datasets, yet their analysis often depends on fragmented workflows spanning file conversion, segmentation, quali...
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Landon Getz @landongetz.bsky.social · 06/08/2026
DNA glycosylases are repair enzymes, essential to all cellular life. They find chemically damaged bases and remove them so DNA can be repaired. Today in Nature Microbiology, we show bacteria have repeatedly repurposed them into antiviral immune systems 🧵 www.nature.com/articles/s41...
nature.com
Antiviral defence is a conserved function of diverse bacterial DNA glycosylases - Nature Microbiology
DNA glycosylases, typically used for DNA repair, can also protect bacteria against phages that would otherwise evade host immunity by incorporating modified bases into their genomes.
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George Bouras @gbouras13.bsky.social · 07/08/2026
If you are looking for web-based phage annotation, phage-annotation.org is live. Upload a genome to run Pharokka, Phold and Phynteny sequentially (see our recent protocols paper doi.org/10.1002/cpz1...). If you have feedback, please reach out Thanks to @ardc.edu.au for making this possible!
phage-annotation.org
Phage Annotation Server -- phage genome annotation
Free automated phage genome annotation -- pharokka, phold and phynteny in one pipeline.
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Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 01/08/2026
Riboseek is a fast RNA/DNA search. More sensitive than nhmmer at 250x speed. Structure-aware realignment produces MSAs approaching rMSA quality. Plus 1.7M precomputed RNA MSAs, and an API to search your own 📄 www.biorxiv.org/content/10.6... 💾 github.com/steineggerla... 🌐 search.foldseek.com/riboseek
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Nature Microbiology @natmicrobiol.nature.com · 30/07/2026
Out Now! Cell-autonomous immunity as an integrated immune network against bacterial and viral pathogens #MicroSky
go.nature.com
Cell-autonomous immunity as an integrated immune network against bacterial and viral pathogens
Nature Microbiology, Published online: 30 July 2026; doi:10.1038/s41564-026-02428-xThis Review summarizes the current knowledge about the cell-intrinsic factors that act against pathogenic bacteria and viruses and the immune evasion strategies that pathogens have to counteract cell-autonomous immunity.
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Hermoine Venter @hjvsci.bsky.social · 30/07/2026
Glad to have this out in the world 🤓 If you want to genetically modify Staphylococcus haemolyticus, you have to dodge its phage defence systems! 🧬🧫 www.microbiologyresearch.org/content/jour...
microbiologyresearch.org
Genetic engineering of Staphylococcus haemolyticus: overcoming restriction-modification barriers and targeting virulence genes
Staphylococcus haemolyticus is an emerging multidrug-resistant nosocomial pathogen noted for robust biofilm formation and complex restriction-modification (RM) systems that hinder genetic manipulation...
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Nature @nature.com · 29/07/2026
Nature research paper: Diverse bacterial pattern recognition receptors sense the core phage proteome go.nature.com/45fpXCZ
go.nature.com
Diverse bacterial pattern recognition receptors sense the core phage proteome - Nature
Systematic analysis of prokaryotic STAND NTPases — relatives of animal and plant immune receptors — uncovers diverse antiviral sensors that detect most of the core structural and replicative proteins of bacteriophages.
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Tominaga K. (tomiken) @pacyc184.bsky.social · 25/07/2026
Octameric dGTPase assemblies mediate broad anti-phage defense | Nature Communications
nature.com
Octameric dGTPase assemblies mediate broad anti-phage defense - Nature Communications
Deoxyguanosine triphosphatases (dGTPases) are nucleotide-depleting enzymes that contribute to antiviral defense. Here, the authors reveal widespread and structurally diverse dGTPases and characterize oligomeric dGTPases in distinct assembly states, providing insights into their architecture, activation, and regulation.
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Jason Nomburg @jnoms.bsky.social · 22/07/2026
Happy to share the first preprint out of the Nomburg lab! Many aspects of cellular immunity are shared across the tree of life. Here, we show that some of these conserved aspects of cellular immunity are mirrored by conserved effectors of immune antagonism. Thread below! 1/15
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Rob Edwards @linsalrob.bsky.social · 22/07/2026
Starting with the DNA sequence of a #phage genome, #PholdAPhage will create a 3D reconstruction of the complete phage, almost like you did cryoEM on it! Check out Renee's awesome software github.com/reneegreen81... to assemble unknown phage particles one protein at a time
A computer generated 3D reconstruction of a phage, based solely on its genome sequence. For this image, we started with the genome, and used PholdAPhage to create the structures. Colours are based on pLDDT scores.
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Rafael Pinilla-Redondo (Rafa) @rafomics.bsky.social · 21/07/2026
1/4 Every good defence needs a backup! 🛡️⚔ Out now in @natrevmicro.nature.com our Comment on "𝗶𝗺𝗺𝘂𝗻𝗲 𝘀𝗮𝗳𝗲𝗴𝘂𝗮𝗿𝗱𝗶𝗻𝗴"! 🎉 🔗 www.nature.com/articles/s41...
nature.com
Immune safeguarding as a conserved principle of antiviral defence - Nature Reviews Microbiology
All organisms defend against viral infections through active immunity mechanisms that clear the virus or population-level mechanisms that cause regulated cell death. Recent research increasingly shows...
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Aude Bernheim @audeber.bsky.social · 21/07/2026
Out @cp-cellhostmicrobe.bsky.social, natural products meet bacterial immunity! We used genomics to identify lanthivirins: a family of >2,000 lanthipeptide BGCs that protect Actinobacteria against phages. Led by @hshomar.bsky.social & @mariegllm.bsky.social www.sciencedirect.com/science/arti...
sciencedirect.com
A family of lanthipeptides with anti-phage function
Bacteria produce natural products to adapt to their environments, with phage interactions as major ecological and evolutionary drivers. While some nat…
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Cell Host & Microbe @cp-cellhostmicrobe.bsky.social · 17/07/2026
Gabija restricts phage circularization & DNA replication Gabija prevents phage genome circularization & replication w/out impacting bacterial host. Exposed DNA ends & phage end-binding proteins license DNA targeting while RecBCD protects host from Gabija www.cell.com/cell-host-mi...
cell.com
Gabija restricts phage circularization and DNA replication
Gabija acts early during phage infection, preventing phage genome circularization and replication. Phage DNA end-binding proteins prevent RecBCD loading onto linear DNA, and the absence of RecBCD lice...
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Arturo Carabias @arturocdr.bsky.social · 16/07/2026
🧬 Thrilled to share our latest @biorxiv-microbiol.bsky.social preprint! Here we find that Retron-IX build crazy supramolecular rings scaffolded by DNA molecules that sense phage infection! www.biorxiv.org/content/10.6... Read more below🧵! (1/X)
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Rafael Pinilla-Redondo (Rafa) @rafomics.bsky.social · 16/07/2026
1/10 🚨Preprint! One RING to rule them all (phages)👑💍⚔️ Bacteria build giant DNA-scaffolded RNase rings (larger than the ribosome!) to shut down viral infection🧬🧵👇 biorxiv.org/content/10.6...
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Osterman Ilya @ostermanilya.bsky.social · 13/07/2026
🚨 We're hiring! My new lab at EMBL Hamburg is looking for a Research Technician. I'm looking for someone excited by phages, metabolism, enzymes, structural biology and bacterial immunity—if you know the right person, please share this post!🧵⬇️ Apply here: embl.wd103.myworkdayjobs.com/en-US/EMBL/j...
embl.wd103.myworkdayjobs.com
Research Technician (Osterman Group – Metabolism-driven immunity)
EMBL Hamburg / CSSB The European Molecular Biology Laboratory (EMBL) is Europe’s flagship life sciences organization, with more than 110 independent research groups across Heidelberg, Hamburg, Grenobl...
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artemisaev.bsky.social @artemisaev.bsky.social · 10/07/2026
Thrilled to share! We present the structure of a prototypical P2 OLD and reveal that its tRNAse activity is triggered by ssDNA hairpins in phage origins or unresolved termini in RecBCD-deficient cells. Great team effort with Wang, Bikard & Nudler labs. www.biorxiv.org/content/10.6...
biorxiv.org
OLD sentinel: an abortive tRNase surveys phage replication and DNA defects in RecBCD-compromised cells
OLD, an abortive immunity protein from prophage P2, consists of an ABC ATPase sensor and a TO-PRIM nuclease effector - a core architecture shared by a large protein family, including components of ant...
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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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Sorek Lab @soreklab.bsky.social · 09/07/2026
Our paper out in Science today: The Metis defense system senses molecular byproducts released when a phage degrades the bacterial genome, and then prevents replication of the phage in the infected cell Congratulations @ostermanilya.bsky.social and co-authors!
science.org
Bacteria sense virus-induced genome degradation via methylated mononucleotides
Phages often degrade the genome of their bacterial host to individual nucleotides. Here we describe Metis, a bacterial defense system that directly senses phage-mediated host genome degradation. Metis...
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Osterman Ilya @ostermanilya.bsky.social · 09/07/2026
Excited to share that our Metis story is now published in Science! 🎉 Bacteria can sense phage-induced degradation of their genome and activate immunity. Many thanks to everyone who contributed to this work. 📄 www.science.org/doi/10.1126/... More details in my earlier thread 🧵⬇️
science.org
Bacteria sense virus-induced genome degradation via methylated mononucleotides
Phages often degrade the genome of their bacterial host to individual nucleotides. Here we describe Metis, a bacterial defense system that directly senses phage-mediated host genome degradation. Metis...
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Zeynep Baharoglu @zeynepbaharoglu.bsky.social · 07/07/2026
Functional divergence and conservation in the QueC protein family (PF06508): from tRNA modification to anti-phage defense 🦠 portlandpress.com/biochemj/art...
portlandpress.com
Functional divergence and conservation in the QueC protein family (PF06508): from tRNA modification to anti-phage defense
Abstract. The QueC protein family (PF06508) is best known for its role in the biosynthesis of 7-deazaguanine derivatives, including the tRNA modification queuosine and the DNA base 7-cyano-7-deazaguan...
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Xavier Charpentier @labxc.bsky.social · 07/07/2026
#microsky New preprint from the lab! Widespread immune systems protect bacteria against conjugative plasmids www.biorxiv.org/content/10.6... Kudos to the extremely talented lead author Ludovic Poiré! Key contributions by @francoisrousset.bsky.social and also help from C. Lesterlin/TacC lab. 🧵⬇️
biorxiv.org
Widespread immune systems protect bacteria against conjugative plasmids
Conjugative plasmids are a class of mobile genetic elements capable of efficient transfer between bacterial cells. Although they can introduce beneficial traits such as antibiotic resistance to recipi...
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François Rousset @francoisrousset.bsky.social · 07/07/2026
🚨Defense systems against conjugative plasmids can kill recipient cells, like abortive infection against phages. Massive effort from very talented Ludovic Poiré (@ludopoire.bsky.social) in the Charpentier lab at @ciri-lyon.bsky.social ! Very happy our team could contribute w @julie-bltk.bsky.social
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Osterman Ilya @ostermanilya.bsky.social · 07/07/2026
www.science.org/doi/abs/10.1...
science.org
Membrane protein solubilization and structure determination using de novo–designed proteins
Developing therapies and vaccines against integral membrane proteins is hindered by their extensive hydrophobic surfaces, which complicate production and structural analysis. Here, we describe a gener...
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