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Updated: May 12, 2026

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Published on: February 6, 2020
Solid-Phase Parallel Synthesis of Photocleavable Bifunctional Molecules Enables Efficient Phenotypic Protein Degrader
Baoli Ding1, Jiawen Hu1, Rongtian Zhang1
1Institute of Pharmacology & Toxicology, Zhejiang Province Key Laboratory of Anti-Cancer Drug Research, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058, P.R. China.
None:
Phenotypic screening offers an effective path for discovering protein degraders, particularly targeting proteins that are poorly characterized or lack sufficient ligand-binding information. Nonetheless, phenotypic protein degrader discovery (PPDD) faces practical hurdles, such as synthetic complexity in generating chemically diverse libraries and difficulties in reliably identifying degradation-driven phenotypes in direct-to-biology (D2B) assays. In response to these challenges, we developed an integrated PPDD platform that combines optimized solid-phase parallel synthesis with a robust D2B screening workflow. Leveraging photocleavable linkers and versatile synthetic strategies, this platform facilitates rapid generation of chemically diverse, ready-to-screen bifunctional molecule libraries requiring minimal purification. As a proof of concept, we synthesized and phenotypically screened 130 cereblon-recruiting molecules, leading to several promising protein degradation-dependent hits. Subsequent hit optimization and target identification validated compound 12-60 as a structurally novel GSPT1 degrader with compelling cellular activity. Overall, our integrated platform represents an efficient and practical toolkit for PPDD, establishing a versatile foundation to accelerate future campaigns and expand the degradable proteome.
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