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Roan Groh

@roangroh.bsky.social
67 followers 122 following 0 posts

Biochemist | Structural Biologist

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Reposted by Roan Groh
Angelina Gross @angegross.bsky.social · 04/02/2025
Exciting news! 🌱 With march I will join the BOKU University in Vienna as a tenure-track assistant! My group will investigate how plants integrate complex environmental stresses to induce #autophagy. www.thegrosslab.com @bokuvienna.bsky.social #plantscience #biochemistry #cellbiology #academicsky
thegrosslab.com
Gross Autophagy Lab
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Reposted by Roan Groh
Angelina Gross @angegross.bsky.social · 23/01/2025
📣Now out: our review on plant 🌱 #autophagy in health and disease! We hope it will be a resource to the community! Please let us know what you think www.annualreviews.org/content/jour... #stressbiology #plantproteolysis2025 with @plantophagy.bsky.social @suaybuestuen.bsky.social and Margot Raffeiner
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Reposted by Roan Groh
Yasin Dagdas @plantophagy.bsky.social · 12/12/2024
Scenes from the (traditional) Christmas Lab Olympics. Truly grateful to share these memories with all these wonderful people
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Reposted by Roan Groh
Yasin Dagdas @plantophagy.bsky.social · 10/12/2024
NEW #Preprint on #ATG8 specialization in #autophagy in #plants: www.biorxiv.org/content/10.1... #plantscience A short 🧵
biorxiv.org
Nonuple atg8 mutant provides genetic evidence for functional specialization of ATG8 isoforms in Arabidopsis thaliana
Autophagy sustains cellular health by recycling damaged or excess components through autophagosomes. It is mediated by conserved ATG proteins, which coordinate autophagosome biogenesis and selective c...
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Reposted by Roan Groh
Haselbach Lab @haselbachlab.bsky.social · 06/12/2024
The second of our two new preprints addresses the question of how proteasomes can be kept dormant for instance in oocytes. This study was spearheaded by first author Sascha Amann. biorxiv.org/cgi/content/... (1/6)🧵
biorxiv.org
PITHD1: An Endogenous Inhibitor of the 26S Proteasome During Cellular Dormancy
Cellular dormancy represents a state of regulated growth arrest essential for diverse biological processes, from reproduction to cancer progression. While mechanisms controlling protein synthesis in d...
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Reposted by Roan Groh
Haselbach Lab @haselbachlab.bsky.social · 05/12/2024
We are very excited to share our recent preprint on the nuclear import mechanism of the proteasome, driven by the multivalent adaptor AKIRIN2! www.biorxiv.org/content/10.1... 🧵 1/6
biorxiv.org
A multivalent adaptor mechanism drives the nuclear import of proteasomes
Nuclear protein homeostasis, including the turnover of transcription factors, critically depends on nuclear proteasomes. After each cell division, proteasomes need to be re-imported into the newly for...
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