Hefei National Laboratory for Physical Sciences at the Microscale, CAS Key Laboratory of Urban Pollutant Conversion, Anhui Province Key Laboratory of Biomass Clean Energy, iChEM, University of Science and Technology of China, Hefei, 230026, China.
Nat Commun. 2021 Feb 26;12(1):1313. doi: 10.1038/s41467-021-21600-x.
To increase the reliability and success rate of drug discovery, efforts have been made to increase the C(sp) fraction and avoid flat molecules. sp-Rich enantiopure amines are most frequently encountered as chiral auxiliaries, synthetic intermediates for pharmaceutical agents and bioactive natural products. Streamlined construction of chiral aliphatic amines has long been regarded as a paramount challenge. Mainstream approaches, including hydrogenation of enamines and imines, C-H amination, and alkylation of imines, were applied for the synthesis of chiral amines with circumscribed skeleton structures; typically, the chiral carbon centre was adjacent to an auxiliary aryl or ester group. Herein, we report a mild and general nickel-catalysed asymmetric reductive hydroalkylation to effectively convert enamides and enecarbamates into drug-like α-branched chiral amines and derivatives. This reaction involves the regio- and stereoselective hydrometallation of an enamide or enecarbamate to generate a catalytic amount of enantioenriched alkylnickel intermediate, followed by C-C bond formation via alkyl electrophiles.
为了提高药物发现的可靠性和成功率,人们努力增加 C(sp) 分数并避免平面分子。 sp 丰富的手性纯胺最常作为手性助剂、药物制剂的合成中间体和生物活性天然产物出现。简化手性脂肪族胺的构建一直被认为是一个至关重要的挑战。主流方法包括烯胺和亚胺的氢化、C-H 胺化和亚胺的烷基化,用于合成具有限定骨架结构的手性胺;通常,手性碳原子紧邻辅助芳基或酯基。在此,我们报告了一种温和且通用的镍催化不对称还原氢烷基化反应,可有效将烯酰胺和烯基氨基甲酸酯转化为类似药物的α-支链手性胺和衍生物。该反应涉及烯酰胺或烯基氨基甲酸酯的区域和立体选择性氢金属化,生成催化量的对映体富集的烷基镍中间体,然后通过烷基亲电试剂进行 C-C 键形成。