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Lars Teschke

@teschkel

Plant Science, Proteomics, Epigenetics & Epitranscriptomics

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24.11.2024
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Latest posts by Lars Teschke @teschkel

Very happy to share our preprint, identifying a noncanonical P gene mRNA editing in Cedar virus. This paper demonstrates how being open to the unexpected and collaborating can lead to fascinating discoveries!

02.03.2026 07:16 πŸ‘ 4 πŸ” 1 πŸ’¬ 1 πŸ“Œ 0
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Special report: State of the climate, a planet on the brink | Plantae This is the last edition of PSRW before the new year. Although we have spent the past year celebrating the breakthroughs in plant science, I am going to end on a more sober note…

"Through choices in policy, investment, education, & care for one another and the Earth, we can still create a turning point. It begins by embracing our shared humanity & recognizing the profound interconnectedness of all life on the planet."
Highlighting a great article
plantae.org/special-repo...

20.12.2025 08:37 πŸ‘ 15 πŸ” 6 πŸ’¬ 1 πŸ“Œ 0
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A Leishmania virulence factor harnesses an allosteric kinase switch to regulate its ubiquitin ligase activity Stringent control of ubiquitylation is a central requirement of signaling specificity in eukaryotes. Here, we discover a domain module integrating pro…

Allosteric activation of a ubiquitin ligase by an internal kinase domain! Congratulations to our team member Thornton Fokkens for this fascinating discovery in a neglected disease area with strong therapeutic need. Many thanks to all our great collaborators!
www.sciencedirect.com/science/arti...

24.09.2025 15:30 πŸ‘ 37 πŸ” 15 πŸ’¬ 0 πŸ“Œ 0
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One-step nanoscale expansion microscopy reveals individual protein shapes - Nature Biotechnology Combining expansion microscopy with super-resolution radial fluctuations captures the morphology of single proteins.

Combining expansion microscopy with super-resolution radial fluctuations captures the morphology of single proteins go.nature.com/3Y1FD8M
rdcu.be/eI29D

03.10.2025 01:42 πŸ‘ 7 πŸ” 3 πŸ’¬ 0 πŸ“Œ 0

Happy that I could contribute a tiny part to this amazing collaborative effort.

02.10.2025 11:55 πŸ‘ 2 πŸ” 0 πŸ’¬ 0 πŸ“Œ 0
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A single-cell, spatial transcriptomic atlas of the Arabidopsis life cycle - Nature Plants This study presents an extensive single-nucleus and spatial transcriptomic atlas of the Arabidopsis life cycle that represents ten distinct developmental time points inclusive of six diverse organs.

From a gene’s single cell expression–through spatial localization–to novel function, and beyond!
Now out @natplants.nature.com
We built a comprehensive spatial-transcriptomic atlas of Arabidopsis, revealing cell-type identities across organs in unprecedented detail
www.nature.com/articles/s41...

19.08.2025 19:20 πŸ‘ 64 πŸ” 24 πŸ’¬ 2 πŸ“Œ 1