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Highly Diastereoselective and Enantioselective Olefin Cyclopropanation Using Engineered Myoglobin-Based Catalysts

机译:使用工程化的基于肌红蛋白的催化剂进行非对映选择性和对映选择性的烯烃环丙烷化

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摘要

Using rational design, an engineered myoglobin-based catalyst capable of catalyzing the cyclopropanation of aryl-substituted olefins with catalytic proficiency (up to 46800 turnovers) and excellent diastereo- and enantioselectivity (98-99.9%) was developed. This transformation could be carried out in the presence of up to 20gL(-1) olefin substrate with no loss in diastereo- and/or enantioselectivity. Mutagenesis and mechanistic studies support a cyclopropanation mechanism mediated by an electrophilic, heme-bound carbene species and a model is provided to rationalize the stereopreference of the protein catalyst. This work shows that myoglobin constitutes a promising and robust scaffold for the development of biocatalysts with carbene-transfer reactivity.
机译:通过合理的设计,开发了一种工程化的基于肌红蛋白的催化剂,该催化剂能够催化芳基取代的烯烃的环丙烷化,具有催化能力(高达46800营业额)和出色的非对映和对映选择性(98-99.9%)。可以在不超过非对映选择性和/或对映选择性不损失的情况下,在不超过20gL(-1)烯烃底物的存在下进行该转化。诱变和机理研究支持由亲电的血红素结合的卡宾物质介导的环丙烷化机理,并提供了一个模型来合理化蛋白质催化剂的立体偏好。这项工作表明肌红蛋白构成了具有卡宾转移反应性的生物催化剂的发展有希望和强大的支架。

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