State Key Laboratory Basis of Xinjiang Indigenous Medicinal Plants Resource Utilization, And CAS Key Laboratory of Chemistry of Plant Resources in Arid Regions, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi, 830011, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Org Biomol Chem. 2022 Nov 30;20(46):9085-9092. doi: 10.1039/d2ob01769e.
To date, the examples of difunctionalization of alkanes to directly incorporate two functional groups are very limited. In this study, we combined photoorgano redox catalysis and P450 biocatalysts to obtain dioxygen-functionalization of α/β-C-H bonds of arylalkanes in a straightforward manner. The synthesis of enantiomerically chiral acyloins through a one-pot two-step photoredox/P450-catalyzed cascade reaction is described. Two P450 mutants with stereocomplementary bio-oxidation were obtained using mutagenesis technology and were able to asymmetrically hydroxylate ketones to acyloins with excellent ee values, which were further proved to be efficient on a wide range of substrates. Moreover, a photoredox synthesis of ketones was developed by the direct carbonylation of aromatic methyl C-H bonds and subsequently combined with the aerobic P450-biocatalytic enantioselective hydroxylation of intermediate ketones, thus providing a green and sustainable approach towards optically pure acyloins.
迄今为止,将两个官能团直接引入烷烃中实现双官能化的例子非常有限。在这项研究中,我们结合光有机氧化还原催化和 P450 生物催化剂,以直接的方式获得芳基烷烃的α/β-C-H 键的双氧官能化。通过一锅两步光还原/P450 催化级联反应描述了通过对映体手性酰基醇的合成。使用突变技术获得了两种具有立体互补生物氧化的 P450 突变体,它们能够以优异的 ee 值将酮不对称地羟化为酰基醇,这在广泛的底物上得到了进一步证明。此外,通过芳基甲基 C-H 键的直接羰基化作用开发了一种光还原酮的合成方法,然后与中间酮的需氧 P450 生物催化对映选择性羟化作用相结合,从而为光学纯酰基醇提供了一种绿色可持续的方法。