Alexander Hanzl

@alexanderhanzl.bsky.social

SNSF postdoctoral fellow at Thomä Lab at FMI in Basel PhD with Georg Winter at CeMM Chemical biology, phenotypic screening, structural biology.

New preprint on technologies to scale up CRISPR screens. We use them to map 665,856 pairwise genetic perturbations and outline a path to comprehensive interaction mapping in human cells. We also introduce an approach for cloning lentiviral libraries with billions of elements.

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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 · 9mo ago

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

New research group leader @matthiasmuhar.bsky.social joins @mpi-cbg.de! 🥳 With his group "Functional genomics of proteome remodeling,” Matthias wants to pursue high-throughput genetic studies to understand how protein turnover is regulated. Welcome, Matthias! www.mpi-cbg.de/news-outreac...

New research group leader for functional genomics

Molecular biologist Matthias Muhar becomes part of the MPI-CBG faculty

mpi-cbg.de

📝 🚨 Review alert from the Thomä Lab @alexanderhanzl.bsky.social, Stefan and Clara collected their thoughts on recent molecular glue degrader modalities. Packed with computational predictions, mutations mimicking glues, bivalent engagement and a discussion on mode of action. tinyurl.com/mpmbuuky

Primed for degradation: How weak protein interactions enable molecular glue degraders

Molecular glues are small drug-like molecules that induce de novo protein–protein interactions or facilitate pre-existing weak interactions between pr…

tinyurl.com

🎉Super excited to share our story on how the substrate receptor FBXO31 functions as a quality control factor by recognizing amides. This has been an amazing collaboration between Bode lab and @jcornlab.bsky.social. Special shutout goes to @matthiasmuhar.bsky.social www.nature.com/articles/s41...

C-terminal amides mark proteins for degradation via SCF–FBXO31 - Nature

SCF–FBXO31 scans proteins for C-terminal amidation and marks them for subsequent proteasomal degradation.

nature.com