Selective CH bond functionalization with engineered heme proteins: new tools to generate complexity.

Selective CH bond functionalization with engineered heme proteins: new tools to generate complexity.
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DOI:
10.1016/j.cbpa.2018.10.004
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发表时间:
2019-04
影响因子:
7.8
通讯作者:
Arnold FH
Arnold FH
中科院分区:
生物学2区
文献类型:
--
作者:
Zhang RK;Huang X;Arnold FH

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C-H官能化是一种有吸引力的构建和多样化分子的策略。血红素蛋白,主要是细胞色素P450,在生物学中负责一系列C-H氧化。最近的工作已经将合成化学,计算和天然产物生物合成的概念与工程血红素蛋白系统相结合,以提供具有定制氧化模式的产品。血红素蛋白催化已被证明远远超出这些天然反应,现在访问新的自然C-H转换,包括C-N和C-C键形成过程。这些系统的新兴工作推动我们沿着雄心勃勃的道路,从无处不在的C-H键构建复杂性。
C—H functionalization is an attractive strategy to construct and diversify molecules. Heme proteins, predominantly cytochromes P450, are responsible for an array of C—H oxidations in biology. Recent work has coupled concepts from synthetic chemistry, computation, and natural product biosynthesis to engineer heme protein systems to deliver products with tailored oxidation patterns. Heme protein catalysis has been shown to go well beyond these native reactions and now accesses new-to-nature C—H transformations, including C—N and C—C bond forming processes. Emerging work with these systems moves us along the ambitious path of building complexity from the ubiquitous C—H bond.
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