Water-Compatible Cycloadditions of Oligonucleotide-Conjugated Strained Allenes for DNA-Encoded Library Synthesis
Water-Compatible Cycloadditions of Oligonucleotide-Conjugated Strained Allenes for DNA-Encoded Library Synthesis
DNA-encoded libraries of small molecules are being explored extensively for the identification of binders in early drug-discovery efforts. Combinatorial syntheses of such libraries require water- and DNA-compatible reactions, and the paucity of these reactions currently limit the chemical features of resulting barcoded products. The present work introduces strain-promoted cycloadditions of cyclic allenes under mild conditions to DNA-encoded library synthesis. Owing to distinct cycloaddition modes of these reactive intermediates with activated olefins, 1,3-dipoles and dienes, the process generates diverse molecular architectures from a single precursor. The resulting DNA-barcoded compounds exhibit unprecedented ring and topographic features?arelated to elements found to be powerful in phenotypic screening.
Stuart L. Schreiber、Jeremy W. Mason、Fr?§|d?§|ric J. Z?§|cri、Matthias V. Westphal、Karin Briner、Liam Hudson
Stuart L. SchreiberJeremy W. MasonFr?§|d?§|ric J. Z?§|criMatthias V. WestphalKarin BrinerLiam Hudson
药学生物科学研究方法、生物科学研究技术制药化学工业
DNA-encoded librarydiversity-oriented synthesisstrained allenecycloadditioncombinatorial chemistry
Stuart L. Schreiber,Jeremy W. Mason,Fr?§|d?§|ric J. Z?§|cri,Matthias V. Westphal,Karin Briner,Liam Hudson.Water-Compatible Cycloadditions of Oligonucleotide-Conjugated Strained Allenes for DNA-Encoded Library Synthesis[EB/OL].(2019-12-17)[2025-08-02].https://chemrxiv.org/engage/chemrxiv/article-details/60c746874c89191cc3ad2b76.点此复制
评论