The Carbohydrate Response Element Binding Protein (ChREBP) is a glucose-responsive transcription factor (TF) with two major splice isoforms (α and β). In chronic hyperglycemia and glucolipotoxicity, ChREBPα-mediated ChREBPβ expression surges, leading to insulin-secreting β-cell dedifferentiation and death. 14-3-3 binding to ChREBPα results in cytoplasmic retention and suppression of transcriptional activity. Thus, small molecule-mediated stabilization of this protein-protein interaction (PPI) may be of therapeutic value. Here, we show that structure-based optimizations of a 'molecular glue' compound led to potent ChREBPα/14-3-3 PPI stabilizers with cellular activity. In primary human β-cells, the most active compound retained ChREBPα in the cytoplasm, and efficiently protected β-cells from glucolipotoxicity while maintaining β-cell identity. This study may thus not only provide the basis for the development of a unique class of compounds for the treatment of Type 2 Diabetes but also showcases an alternative 'molecular glue' approach for achieving small molecule control of notoriously difficult to target TFs.
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http://dx.doi.org/10.1038/s41467-025-57241-7 | DOI Listing |
RSC Med Chem
February 2025
Laboratory of Chemical Biology, Department of Biomedical Engineering and Institute for Complex Molecular Systems, Eindhoven University of Technology Groene Loper 3 5612 AE Eindhoven The Netherlands
Protein-protein interactions (PPIs) are key regulators of various cellular processes. Modulating PPIs with small molecules has gained increasing attention in drug discovery, particularly targeting the 14-3-3 protein family, which interacts with several hundred client proteins and plays a central role in cellular networks. However, targeting a specific PPI of the hub protein 14-3-3, with its plethora of potential client proteins, poses a significant selectivity challenge.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
March 2025
Department of Biotherapy, Cancer Center and State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.
For decades, microtubules-composed of αβ-tubulin dimers-have been primary targets for cancer chemotherapy. While eight binding sites on the tubulin dimer have been structurally characterized, this study reveals a ninth. We found that the tubulin inhibitor Tumabulin-1 (TM1, a BML284 derivative) binds simultaneously to the well-known colchicine site and a previously unknown site, designated as Tumabulin site.
View Article and Find Full Text PDFChem Commun (Camb)
March 2025
Department of Chemical & Physical Sciences, University of Toronto Mississauga, Mississauga, ON, Canada.
Targeted protein degradation (TPD) is revolutionizing drug discovery, but PROTAC synthesis remains challenging due to multi-step synthesis and slow linker installation SAr on 4-fluorothalidomide. Here, we optimize a microwave-assisted synthesis (MAS) of pomalidomide building blocks, achieving high yields within 15 min - boosting yield by at least 14% at gram scale without the need for purification. Unlike conventional oil bath heating and overnight reactions, MAS streamlines degrader development.
View Article and Find Full Text PDFTargeted protein degradation (TPD) induced by small molecules has emerged as a rapidly evolving modality in drug discovery, targeting proteins traditionally considered "undruggable". Proteolysis-targeting chimeras (PROTACs) and molecular glue degraders (MGDs) are the primary small molecules that induce TPD. Both types of molecules form a ternary complex linking an E3 ligase with a target protein, a crucial step for drug discovery.
View Article and Find Full Text PDFRSC Chem Biol
March 2025
Novartis Biomedical Research Fabrikstrasse 2 CH-4056 Basel Switzerland
Many disease-relevant and functionally well-validated targets are difficult to drug. Their poorly defined 3D structure without deep hydrophobic pockets makes the development of ligands with low molecular weight and high affinity almost impossible. For these targets, incorporation into a ternary complex may be a viable alternative to modulate and in most cases inhibit their function.
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