jsb-lab.bsky.social
@jsb-lab.bsky.social
Please also check out another exciting work on AI-based protein design, which was a fantastic team effort with Michael Hölzel, @gha14.bsky.social, Tobias Bald and many colleagues at @unibonn.bsky.social
www.biorxiv.org/content/10.1...
Development of AI-designed protein binders for detection and targeting of cancer cell surface proteins
Artificial intelligence (AI)-based protein design opens new avenues for the rapid generation of new research tools and therapeutics, but experimental validation lags behind the computational design th...
www.biorxiv.org
May 16, 2025 at 7:21 PM
We are grateful to the Hans und Ria Messer Stiftung and the cluster of excellence @immunosens.bsky.social for supporting our research at @unibonn.bsky.social and Uniklinikum Bonn
May 16, 2025 at 7:21 PM
This work was led by the phenomenal team of Alexander Hoch, Caroline Fandrey, Thomas Ebert in collaboration with Brian Coventry and David Baker at @uwproteindesign.bsky.social, Tim Kempchen at the Hölzel lab, and Sebastian Virreira Winter and Philipp Geyer from ions.bio
May 16, 2025 at 7:21 PM
Not yet in the preprint: Mass spectrometry confirmed the highly specific degradation of one target protein out of 9,677 human proteins that were quantified in cell lysates
May 16, 2025 at 7:21 PM
Fusing AI-binders to a mutant FKBP12 domain enabled drug-controlled degradation of the endogenous target protein in human macrophages
May 16, 2025 at 7:21 PM
Coupling AI-binders to EGFP enabled the antibody-free staining of an endogenous protein in primary human macrophages
May 16, 2025 at 7:21 PM
Using Transposon-Display, we identified binders for four intracellular human proteins and further improved them by saturation mutagenesis
May 16, 2025 at 7:21 PM
We developed a technology called Transposon-Display, which couples AI binders to their own DNA for pooled screening
May 16, 2025 at 7:21 PM