Chemical tools to expand the ligandable proteome: diversity-oriented synthesis-based photoreactive stereoprobes

Author:

Ogasawara Daisuke,Konrad David B.,Tan Zher Yin,Carey Kimberly L.,Luo Jessica,Won Sang Joon,Li Haoxin,Carter Trever,DeMeester Kristen E.,Njomen Evert,Schreiber Stuart L.,Xavier Ramnik J.,Melillo Bruno,Cravatt Benjamin F.

Abstract

SummaryChemical proteomics enables the global assessment of small molecule-protein interactions in native biological systems and has emerged as a versatile approach for ligand discovery. The range of small molecules explored by chemical proteomics has, however, been limited. Here, we describe a diversity-oriented synthesis (DOS)-inspired library of stereochemically-defined compounds bearing diazirine and alkyne units for UV light-induced covalent modification and click chemistry enrichment of interacting proteins, respectively. We find that these ‘photo-stereoprobes’ interact in a stereoselective manner with hundreds of proteins from various structural and functional classes in human cells and demonstrate that these interactions can form the basis for high-throughput screening-compatible nanoBRET assays. Integrated phenotypic analysis and chemical proteomics identified photo-stereoprobes that modulate autophagy by engaging the mitochondrial serine protease CLPP. Our findings show the utility of photo-stereoprobes for expanding the ligandable proteome, furnishing target engagement assays, and discovering and characterizing bioactive small molecules by cell-based screening.

Publisher

Cold Spring Harbor Laboratory

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