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Biology subjects

Pass, M.

Publications and source records attributed to Pass, M..

2 recordsLinked to original sources

Identification and SAR optimization of FBXO22-mediated TEAD Targeted Glue degraders

TEAD transcription factors are emerging oncology targets due to their function as key effectors of the Hippo signalling pathway, which is frequently dysregulated in cancer. Here, we report the discovery and development of potent, deep, and rapid-acting TEAD Targeted Glue degraders that leverage an aldehyde-mediated degron mechanism. Our compounds demonstrate exceptional on-pathway selectivity profiles and exhibit the expected Hippo signalling modulation. Mechanistically, we demonstrate that amine-based TEAD degrader scaffolds undergo extracellular conversion to the active aldehyde species, which mediate covalent engagement of FBXO22 C326, triggering TEAD proteasomal degradation. The degraders identified were able to be rationally and systematically optimised for both degradation potency and kinetics, achieving enhanced degradation profiles compared to previously reported FBXO22-targeting approaches, establishing design principles for this degrader class. Our findings highlight strategies for the structure activity relationship (SAR) and rational optimization of aldehyde-mediated degrons to generate novel precision molecular glue degraders against TEAD, a high value oncology target.

cancer biology↗

Selective degradation of BRD9 by a DCAF16-recruiting targeted glue: mode of action elucidation and in vivo proof of concept

Prospective discovery of molecular glues degraders for a specific therapeutic target protein of interest is an emerging strategy in drug discovery. Modification of pre-existing ligands with fragments that can alter the protein surface can lead to the creation of novel compounds ( targeted glues) able to induce neo-interactions between the target and an E3 ligase, resulting in targeted protein degradation. By screening a library of potential BRD9 targeted glue compounds, we have discovered a potent and selective, reversibly covalent BRD9 degrader, AMPTX-1. Co-immunoprecipitation-mass spectrometry experiments demonstrated that cell treatment with AMPTX-1 induces selective recruitment of BRD9 to the E3 ligase DCAF16. Degradation is dependent on the engagement of the surface Cys58 of DCAF16 and formation of a covalent adduct to DCAF16 is facilitated by the ternary complex formation with BRD9. BRD9 degradation is achieved in vivo after oral dosing, demonstrating that covalent recruitment of DCAF16 is a viable strategy for targeted protein degradation and can be achieved with drug-like, orally bioavailable compounds with promising in vivo activity.

biochemistry↗