Molecular glues of the regulatory ChREBP/14-3-3 complex protect beta cells from glucolipotoxicity

调节性 ChREBP/14-3-3 复合物的分子胶保护 β 细胞免受糖脂毒性

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作者:Liora S Katz #, Emira J Visser #, Kathrin F Plitzko #, Marloes A M Pennings #, Peter J Cossar, Isabelle L Tse, Markus Kaiser, Luc Brunsveld, Christian Ottmann, Donald K Scott

Abstract

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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