Cindy Lee Wan-Chen, Wang Duo-Sheng, Zhang Congzhe, Xie Jingjing, Li Bo, Zhang X Peter
Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, United States.
Chem. 2021 Jun 10;7(6):1588-1601. doi: 10.1016/j.chempr.2021.03.002. Epub 2021 Mar 29.
A catalytic radical process has been developed for asymmetric cyclopropanation of dehydroaminocarboxylates with in situ-generated α-aryldiazomethanes via Co(II)-based metalloradical catalysis (MRC). Through fine-tuning the environments of -symmetric chiral amidoporphyrin platform as the supporting ligands, the Co(II)-metalloradical system can effectively activate various α-aryldiazomethanes to cyclopropanate different dehydroaminocarboxylates under mild conditions, enabling the stereoselective synthesis of chiral cyclopropyl α-amino acid derivatives. In addition to high yields and excellent enantioselectivities, the Co(II)-catalyzed asymmetric radical cyclopropanation exhibits ()-diastereoselectivity, which is the opposite of uncatalyzed thermal reaction. Combined computational and experimental studies support a stepwise radical mechanism for the Co(II)-catalyzed cyclopropanation reaction. The resulting enantioenriched ()-α-amino-β-arylcyclopropanecarboxylates, as showcased for the efficient synthesis of dipeptides, may serve as unique non-proteinogenic amino acid building blocks for the design and preparation of novel peptides with restricted conformations.
通过基于钴(II)的金属自由基催化(MRC),已开发出一种催化自由基过程,用于脱氢氨基羧酸盐与原位生成的α-芳基重氮甲烷的不对称环丙烷化反应。通过微调作为支撑配体的不对称手性酰胺基卟啉平台的环境,钴(II)-金属自由基体系可以在温和条件下有效地活化各种α-芳基重氮甲烷,使其与不同的脱氢氨基羧酸盐发生环丙烷化反应,从而实现手性环丙基α-氨基酸衍生物的立体选择性合成。除了高产率和优异的对映选择性外,钴(II)催化的不对称自由基环丙烷化反应还表现出()-非对映选择性,这与未催化的热反应相反。计算和实验相结合的研究支持了钴(II)催化环丙烷化反应的逐步自由基机理。所得的对映体富集的()-α-氨基-β-芳基环丙烷羧酸酯,如在二肽的高效合成中所展示的,可作为独特的非蛋白质ogenic氨基酸构建块,用于设计和制备具有受限构象的新型肽。