Elliott Lab

@elliottlab.bsky.social

At the Department of Biochemistry, University of Oxford, UK. Structural biology. Ubiquitination pathways. elliottlab.web.ox.ac.uk

Congratulations to Franco Viscarra with his collaborative contribution to PNAS , "A Cannabidiol-Sensitive Region Involved in the Allosteric Modulation of the α7 Nicotinic Receptor": www.pnas.org/doi/10.1073/pnas.2535398123 Nice combination of multiple techniques with Bouzat and Bermudez labs!

A cannabidiol-sensitive region involved in the allosteric modulation of the α7 nicotinic receptor | PNAS

Cannabidiol (CBD), a nonpsychoactive phytocannabinoid from Cannabis sativa, modulates the α7 nicotinic acetylcholine receptor (α7 nAChR), a key tar...

pnas.org

Our latest study of the scavenger receptor CD163, led by Richard Zhou. This follows our previous study of how CD163 uses its remarkable molecular architecture to bind haptoglobin-haemoglobin. We now show how its flexible arms allow haemoglobin binding, revealing how ligand promiscuity works.

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Introducing our new blood-stage malaria vaccine immunogen based on the essential invasion protein PfCyRPA. By understanding where on PfCyRPA the best antibodies bind, we used structure guided design to generate PfCyRPA-EM, which contains only the epitopes of the best antibodies.

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We introduce #ProxiCapture, an affinity-proteomics platform to map degrader-induced interactions in native cell & tissue lysates. We uncover a context-dependent “glueable” proteome and a scalable route to accelerate molecular glue discovery 🤗 @ibc2-gu.bsky.social @goetheuni.bsky.social

bioRxiv Cancer Bio@biorxiv-cancer.bsky.social · 7mo ago

ProxiCapture Reveals Context-Dependent CRBN Interactore Landscape of Molecular Glue Degraders https://www.biorxiv.org/content/10.64898/2026.01.05.697692v1