Targeted protein degradation with molecular glue degraders has arisen as a powerful therapeutic modality for eliminating classically undruggable disease-causing proteins through proteasome-mediated degradation. However, we currently lack rational chemical design principles for converting protein-targeting ligands into molecular glue degraders. To overcome this challenge, we sought to identify a transposable chemical handle that would convert protein-targeting ligands into molecular degraders of their corresponding targets. Using the CDK4/6 inhibitor ribociclib as a prototype, we identified a covalent handle that, when appended to the exit vector of ribociclib, induced the proteasome-mediated degradation of CDK4 in cancer cells. Further modi...
Covalent drugs have garnered intense interest due to the unique ways in which they can modulate prot...
Multicomponent reaction (MCR) chemistry is a promising and useful tool for building the chemical lib...
Proteolysis targeting chimeras (PROTACs) are complex molecules to design and optimize as degraders, ...
Molecular glue degraders are small, drug-like compounds that induce interactions between an E3 ubiqu...
Targeted protein degradation has arisen as a powerful therapeutic modality for degrading disease tar...
Molecular glue degraders are small, drug-like compounds that induce interactions between an E3 ubiqu...
Protein-protein interactions (PPIs) govern all biological processes. Some small molecules modulate P...
Molecular-glue-mediated proximity-induced degradation now allows unprecedented therapeutic targeting...
Molecular glue compounds induce protein–protein interactions that, in the context of a ubiquitin lig...
Targeted protein degradation has arisen as a powerful strategy for drug discovery allowing the targe...
Targeted protein degradation has arisen as a powerful strategy for drug discovery allowing the targe...
Targeted protein degradation (TPD) using proteolysis targeting chimeras (PROTACs) and molecular glue...
The translation of natural product function to fully synthetic small molecules has remained an impor...
Molecular glue compounds induce protein–protein interactions that, in the context of a ubiquitin l...
The Petasis borono-Mannich reaction was employed for an alternative entry towards three-branched cer...
Covalent drugs have garnered intense interest due to the unique ways in which they can modulate prot...
Multicomponent reaction (MCR) chemistry is a promising and useful tool for building the chemical lib...
Proteolysis targeting chimeras (PROTACs) are complex molecules to design and optimize as degraders, ...
Molecular glue degraders are small, drug-like compounds that induce interactions between an E3 ubiqu...
Targeted protein degradation has arisen as a powerful therapeutic modality for degrading disease tar...
Molecular glue degraders are small, drug-like compounds that induce interactions between an E3 ubiqu...
Protein-protein interactions (PPIs) govern all biological processes. Some small molecules modulate P...
Molecular-glue-mediated proximity-induced degradation now allows unprecedented therapeutic targeting...
Molecular glue compounds induce protein–protein interactions that, in the context of a ubiquitin lig...
Targeted protein degradation has arisen as a powerful strategy for drug discovery allowing the targe...
Targeted protein degradation has arisen as a powerful strategy for drug discovery allowing the targe...
Targeted protein degradation (TPD) using proteolysis targeting chimeras (PROTACs) and molecular glue...
The translation of natural product function to fully synthetic small molecules has remained an impor...
Molecular glue compounds induce protein–protein interactions that, in the context of a ubiquitin l...
The Petasis borono-Mannich reaction was employed for an alternative entry towards three-branched cer...
Covalent drugs have garnered intense interest due to the unique ways in which they can modulate prot...
Multicomponent reaction (MCR) chemistry is a promising and useful tool for building the chemical lib...
Proteolysis targeting chimeras (PROTACs) are complex molecules to design and optimize as degraders, ...