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Design of an in vitro biocatalytic cascade for the manufacture of islatravir

机译:设计用于生产伊曲拉韦的体外生物催化级联反应

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Enzyme-catalyzed reactions have begun to transform pharmaceutical manufacturing, offering levels of selectivity and tunability that can dramatically improve chemical synthesis. Combining enzymatic reactions into multistep biocatalytic cascades brings additional benefits. Cascades avoid the waste generated by purification of intermediates. They also allow reactions to be linked together to overcome an unfavorable equilibrium or avoid the accumulation of unstable or inhibitory intermediates. We report an invitro biocatalytic cascade synthesis of the investigational HIV treatment islatravir. Five enzymes were engineered through directed evolution to act on non-natural substrates. These were combined with four auxiliary enzymes to construct islatravir from simple building blocks in a three-step biocatalytic cascade. The overall synthesis requires fewer than half the number of steps of the previously reported routes.
机译:酶催化的反应已经开始改变药物的生产,提供了可大大改善化学合成的选择性和可调性水平。将酶促反应结合到多步生物催化级联反应中可带来更多好处。级联避免了中间体纯化所产生的浪费。它们还允许将反应链接在一起,以克服不利的平衡或避免不稳定或抑制性中间体的积累。我们报告了艾滋病毒治疗依特拉维的体外生物催化级联合成。通过定向进化工程改造了五种酶以作用于非天然底物。将它们与四种辅助酶组合,以简单的结构单元以三步生物催化级联方式构建islatravir。整个综合所需的步数少于以前报告路线的一半。

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