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Morgan Lab

@morganlab-saarland.bsky.social
127 followers 116 following 10 posts

We love redox biology!

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Morgan Lab @morganlab-saarland.bsky.social · 10/03/2026
We are extremely happy to share our latest publication on peroxiredoxin heterooligomerisation. A wonderful collaboration with the labs of Marcel Deponte, Joris Messens, Jan Riemer, and many others.
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Reposted by Morgan Lab
messenslab.bsky.social @messenslab.bsky.social · 10/03/2026
Cells may work with “Lego®️ bricks” 🧱 at the molecular level. Our new study shows that peroxiredoxins can mix different subunits to form hybrid complexes arranged in donut-like rings 🍩, creating molecular diversity that helps cells fine-tune stress and redox signaling responses. Out in Nat Chem Biol.
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Reposted by Morgan Lab
messenslab.bsky.social @messenslab.bsky.social · 10/03/2026
www.nature.com/articles/s41...
nature.com
Hetero-oligomerization drives structural plasticity of eukaryotic peroxiredoxins - Nature Chemical Biology
Peroxiredoxins from diverse organisms were found to assemble into hybrid complexes, not just identical ones. These mixed assemblies reshape structure and stability, challenging a long-held view of per...
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Morgan Lab @morganlab-saarland.bsky.social · 30/04/2025
We are looking for a new colleague in the biology department at Saarland University! We are looking for excellent Cell Biologists / Cell Physiologists for a W2 tenure track W3 professorship in 'Dynamics of Biological Systems'. Please share! jobs.zeit.de/jobs/w2-prof...
jobs.zeit.de
W2 Professorship (with tenure track to W3) in the Dynamics of Biological Systems (m/f/x) - Universität des Saarlandes
Universität des Saarlandes bietet Stelle als W2 Professorship (with tenure track to W3) in the Dynamics of Biological Systems (m/f/x) in Saarbrücken - jetzt bewerben!
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
8/ 8/ The work now begins to understand the functional implications of peroxiredoxin heterooligomerisation and its implications for our current view of these fascinating proteins.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
With Armindo Salvador, we determined that it is possible to form as many as 120 distinct heterodecameric complexes with two monomeric components.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
6/ With @riemerlab.bsky.social we could also show the presence of PRDX1-PRDX2 heterooligomers in HEK293T cells.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
5/ Heterooligomerisation is inducible in response to oxidative challenge in yeast and stabilises Tsa1 as a Tsa1-Tsa2 heterodecameric complex.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
4/ With the Messens lab, we used negative stain EM to visualise heterooligomers and show that heterooligomerisation strongly affects dimer-decamer equilbrium.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
3/ Long considered to only form homooligomeric complexes, we find that pairs of peroxiredoxins from human, yeast, plant and parasite readily assemble into heterodimers and heterodecamers.
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
2/ We also had the pleasure to work with @riemerlab.bsky.social @herrmannlab.bsky.social, Timo Mühlhaus lab, Ana Tomas lab and Armindo Salvador on this exciting project
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Morgan Lab @morganlab-saarland.bsky.social · 11/03/2025
Our first post on Bluesky! 1/ We are excited to share our latest work, showing that heterooligomerisation drives structural plasticity of Prx1-type peroxiredoxins. www.biorxiv.org/content/10.1... Another fantastic collaboration with the Marcel Deponte lab and Joris Messens lab!
biorxiv.org
Heterooligomerization drives structural plasticity of eukaryotic peroxiredoxins
Peroxiredoxins are highly conserved thiol peroxidases essential for peroxide detoxification, redox signaling, and chaperone activity. Prx1/AhpC-type peroxiredoxins are found throughout the eukaryotic ...
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