化学
配体(生物化学)
电泳剂
肽
组合化学
环肽
肽合成
芳基
立体选择性
立体化学
化学合成
范围(计算机科学)
功能(生物学)
催化作用
作者
Jie Hu,Shengjie Su,Haodong Zhang,Hongyu An,Yunrong Chen,Hegui Gong
摘要
The stereoselective modulations of peptide backbone α-carbons at internal sites present a longstanding synthetic challenge. To the best of our knowledge, transition metal-catalyzed C–C cross-coupling chemistry has not been employed to address this issue. Herein, we report that a racemic α-C-tosyl glycinyl unit (TsG), readily installed at a defined site within the peptide backbone, serves as an excellent electrophile for Ni-catalyzed reductive vinylation and arylation with vinyl and aryl triflates or halides, delivering α-C(sp2)-modified peptides with outstanding diastereoselectivity. Catalyst control dominates stereoselectivity, enabling stereodivergent modification at internal peptide backbone sites by tuning ligand chirality─a rare achievement compared with most contemporary studies focusing primarily on N-terminal α-carbons. The peptide scope was broad, encompassing decapeptides and cyclic pentapeptides. This study is expected to inspire broad interest in late-stage peptide backbone modification through cross-coupling strategies.
科研通智能强力驱动
Strongly Powered by AbleSci AI