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Tracking the mechanism of covalent molecular glue stabilization using native mass spectrometry.


ABSTRACT: Molecular glues are powerful tools for the control of protein-protein interactions. Yet, the mechanisms underlying multi-component protein complex formation remain poorly understood. Native mass spectrometry (MS) detects multiple protein species simultaneously, providing an entry to elucidate these mechanisms. Here, for the first time, covalent molecular glue stabilization was kinetically investigated by combining native MS with biophysical and structural techniques. This approach elucidated the stoichiometry of a multi-component protein-ligand complex, the assembly order, and the contributions of covalent versus non-covalent binding events that govern molecular glue activity. Aldehyde-based molecular glue activity is initially regulated by cooperative non-covalent binding, followed by slow covalent ligation, further enhancing stabilization. This study provides a framework to investigate the mechanisms of covalent small molecule ligation and informs (covalent) molecular glue development.

SUBMITTER: Verhoef CJA 

PROVIDER: S-EPMC10284121 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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Tracking the mechanism of covalent molecular glue stabilization using native mass spectrometry.

Verhoef Carlo J A CJA   Kay Danielle F DF   van Dijck Lars L   Doveston Richard G RG   Brunsveld Luc L   Leney Aneika C AC   Cossar Peter J PJ  

Chemical science 20230531 24


Molecular glues are powerful tools for the control of protein-protein interactions. Yet, the mechanisms underlying multi-component protein complex formation remain poorly understood. Native mass spectrometry (MS) detects multiple protein species simultaneously, providing an entry to elucidate these mechanisms. Here, for the first time, covalent molecular glue stabilization was kinetically investigated by combining native MS with biophysical and structural techniques. This approach elucidated the  ...[more]

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