Department of Chemistry and Biochemistry, University of Texas at Dallas, 800 W. Campbell Road, Richardson, Texas 75080, United States.
Department of Chemistry and Chemical Biology, Stevens Institute of Technology, 1 Castle Point Terrace, Hoboken, New Jersey 07030, United States.
J Am Chem Soc. 2024 Jul 24;146(29):19673-19679. doi: 10.1021/jacs.4c06103. Epub 2024 Jul 15.
Hemoproteins have recently emerged as powerful biocatalysts for new-to-nature carbene transfer reactions. Despite this progress, these strategies have remained largely limited to diazo-based carbene precursor reagents. Here, we report the development of a biocatalytic strategy for the stereoselective construction of pyridine-functionalized cyclopropanes via the hemoprotein-mediated activation of pyridotriazoles (PyTz) as stable and readily accessible carbene sources. This method enables the asymmetric cyclopropanation of a variety of olefins, including electron-rich and electrodeficient ones, with high activity, high stereoselectivity, and enantiodivergent selectivity, providing access to mono- and diarylcyclopropanes that incorporate a pyridine moiety and thus two structural motifs of high value in medicinal chemistry. Mechanistic studies reveal a multifaceted role of 7-halogen substitution in the pyridotriazole reagent toward favoring multiple catalytic steps in the transformation. This work provides the first example of asymmetric olefin cyclopropanation with pyridotriazoles, paving the way to the exploitation of these attractive and versatile reagents for enzyme-catalyzed carbene-mediated reactions.
血红素蛋白最近已成为用于新型卡宾转移反应的强大生物催化剂。尽管取得了这一进展,但这些策略在很大程度上仍然仅限于基于重氮的卡宾前体试剂。在这里,我们报告了一种通过血红素蛋白介导的稳定且易于获得的卡宾源吡咯三唑(PyTz)的激活来立体选择性构建吡啶功能化环丙烷的生物催化策略。该方法能够通过高活性、高对映选择性和对映体发散选择性对各种烯烃(包括富电子和缺电子烯烃)进行不对称环丙烷化,提供了具有吡啶部分和因此在药物化学中具有高价值的两个结构基序的单芳基和二芳基环丙烷。机理研究揭示了吡咯三唑试剂中 7-卤代取代的多方面作用,有利于转化中的多个催化步骤。这项工作提供了使用吡咯三唑进行不对称烯烃环丙烷化的第一个例子,为利用这些有吸引力和多功能的试剂进行酶催化卡宾介导的反应铺平了道路。