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Jonasz B Patkowski

@jonaszpatkowski.bsky.social
135 followers 463 following 0 posts

Structural Biologist (Cryo-EM) @ Imperial College London

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Reposted by Jonasz B Patkowski
Imperial Science @imperialsci.bsky.social · 11/09/2025
Imperial researchers have discovered how ‘pirate phages’ hijack other viruses to break into bacteria, sharing new genetic material for dangerous traits. This discovery that could be harnessed to tackle #AMR Read more ⬇️ www.imperial.ac.uk/news/268213/...
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Reposted by Jonasz B Patkowski
Lingchen He 何灵尘 @lingchenhe.bsky.social · 09/09/2025
Finally, we demonstrated evolutionary homology between cf-PICI and phage HK97 capsids, while showing that cf-PICIs avoid interference during capsid assembly through finely tuned interactions, thereby ensuring efficient and specific packaging of their own DNA. @jonaszpatkowski.bsky.social
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Reposted by Jonasz B Patkowski
Lingchen He 何灵尘 @lingchenhe.bsky.social · 09/09/2025
In addition, we identified adaptor and connector genes as central to capsid–tail chimeric assembly, with high variability during the evolution of tail-less capsids.
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Reposted by Jonasz B Patkowski
Lingchen He 何灵尘 @lingchenhe.bsky.social · 09/09/2025
This uncovers unexpected complexity in phage–satellite interactions, challenging the long-held view that satellites rely on a single helper phage to complete their lifecycle.
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Reposted by Jonasz B Patkowski
Lingchen He 何灵尘 @lingchenhe.bsky.social · 09/09/2025
We revealed a key feature of tail piracy: cf-PICIs can exploit multiple helper phages—one inducing their cycle, another supplying tails. Remarkably, cf-PICIs can even accumulate tail-less particles without helper phage induction, and factors causing cell lysis can release them.
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Reposted by Jonasz B Patkowski
Lingchen He 何灵尘 @lingchenhe.bsky.social · 09/09/2025
We discovered a new horizontal gene transfer mechanism: tail-less cf-PICIs hijack free phage tails extracellularly, forming infectious chimeric virions that drive both intra- and inter-species transfer among bacteria. @jonaszpatkowski.bsky.social @tcostalab.bsky.social @jrpenades.bsky.social
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Reposted by Jonasz B Patkowski
José R Penadés @jrpenades.bsky.social · 09/09/2025
Thrilled to share our two latest papers with the @tcostalab.bsky.social lab! In the first, we uncover a new mechanism of satellite transfer: cf-PICIs hijack tails from diverse phages to spread across species. @imperialcollegeldn.bsky.social www.cell.com/cell/fulltex...
cell.com
Chimeric infective particles expand species boundaries in phage-inducible chromosomal island mobilization
Capsid-forming PICIs (cf-PICIs) produce their own capsids and exploit phage tails from unrelated species to transfer their DNA across bacterial hosts. This tail piracy enables broad dissemination and ...
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Reposted by Jonasz B Patkowski
José R Penadés @jrpenades.bsky.social · 09/09/2025
Our second paper with @tcostalab.bsky.social and GoogleDeepMind reports our experience with Google’s co-scientist: remarkably, the AI independently recapitulated our experimental discovery on cf-PICIs, showcasing AI’s potential to accelerate biology. www.cell.com/cell/fulltex...
cell.com
AI mirrors experimental science to uncover a mechanism of gene transfer crucial to bacterial evolution
By solving a previously unsolved biological question, the AI co-scientist predicted a complex mechanism of gene transfer and generated hypotheses that opened new research directions, illustrating AI's...
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