Marco Trujillo

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Marco Trujillo

Marco Trujillo

@TrujilloLab

Fascinated by ubiquitination. Located at the University of Hamburg. Tweets are my own. @trujillolab.bsky.social

Hamburg, Germany Katılım Ağustos 2011
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Marco Trujillo
Marco Trujillo@TrujilloLab·
Endogenous molecular glue acts as a signal in human cells - akin to auxin! Metabolite glues as a means of purine sensing and chemotherapeutic response nature.com/articles/s4158…
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Yansong Miao Lab
Yansong Miao Lab@MiaoYansong·
Excited to share our newly published "A Multidimensional View of Biomolecular Condensates in Plant Biology" in the Annual Review of Plant Biology! We discuss emerging mechanisms, biological functions, and future directions. 🌱🔬 - go.shr.lc/43rf7Zj
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Mauricio Contreras
Mauricio Contreras@mpcontreras4·
Check out our latest work! AlphaFold 3 revealed a transient immune receptor complex that eluded biochemical studies for almost a decade🤯 We describe a conserved structural logic underlying sensor–helper communication in an NLR immune receptor network 🧵👇 biorxiv.org/content/10.648…
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Sophien Kamoun
Sophien Kamoun@KamounLab·
Just published: The Hidden Handshake: How AlphaFold Solved a Decade-Long Mystery in Plant Immunity Over ten years in the making - generations of students and postdocs, countless false starts, and others were chasing this too. Here's the structural basis of NLR activate-and-release, and, yes, we can engineer it. medium.com/p/the-hidden-h…
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Prof. Keiko Torii
Prof. Keiko Torii@KeikoUTorii·
新作です!  植物の気孔の数を決める受容体キナーゼERECTAのK63ユビキチン修飾部位を同定。修飾不可な受容体は細胞膜上に残存するため活性が亢進し、その結果、気孔の数が減少することを示しました。おめでとう@NewPhyt 🥳🌱 nph.onlinelibrary.wiley.com/doi/10.1111/np…
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Logan Thrasher Collins
Logan Thrasher Collins@LoganTCollins·
Pinner and Dietz made DNA origami shells which mimic biological clathrin proteins by grabbing onto lipid membranes and pulling out roughly spherical buds! Link "Programmable DNA shell scaffolds for directional membrane budding": nature.com/articles/s4146…
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Alga Zuccaro
Alga Zuccaro@Team_Zuccaro·
Really proud of this work led by Ruben Eichfeld! We show how a CBM domain gain/loss can rewire fungal chitinases, turning them from antifungal enzymes into immune-suppressing effectors that support plant symbiosis. nature.com/articles/s4146…
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Bruno Ngou
Bruno Ngou@BrunoNgou·
Cell-surface receptors play key roles across many biological processes. In plants, these receptor families have undergone remarkable expansion. Here, we systematically review these receptors in @ThePlantJournal. Happy to see this out! onlinelibrary.wiley.com/doi/10.1111/tp…
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Panagiotis Sarris
Panagiotis Sarris@PanosSarris·
Targeting redundant gene families: A multiplexed, tissue-specific CRISPR toolbox for Arabidopsis genetic screens. cell.com/cell-reports/f…
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Alga Zuccaro
Alga Zuccaro@Team_Zuccaro·
We are pleased to announce that CEPLAS has open research positions for both doctoral and postdoctoral researchers. Please help in spreading the word: ceplas.eu/en/training-ca…
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Marco Trujillo
Marco Trujillo@TrujilloLab·
Looking forward to visiting Taiwan and meeting alumni Ooi-Kock Teh now group leader @AcadSinica ipmb.sinica.edu.tw/en/people/ipmb…
IPMB Academia Sinica (中研院植微所)@IPMBSinica

[@IPMBSinica Seminar] 2026-02-25 10:30; A134, Ag Tech Bldg Speaker:Prof. Marco Trujillo @TrujilloLab (Head, Department of Plant Immune Biology, University of Hamburg, Germany) Title:Protein homeostasis networks - challenges and opportunities for stressed plants

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