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A Comparative Study on Asymmetric Reduction of Ketones Using the Growing and Resting Cells of Marine-Derived Fungi

机译:利用海洋真菌生长和静止细胞不对称还原酮的比较研究

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摘要

Whole-cell biocatalysts offer a highly enantioselective, minimally polluting route to optically active alcohols. Currently, most of the whole-cell catalytic performance involves resting cells rather than growing cell biotransformation, which is one-step process that benefits from the simultaneous growth and biotransformation, eliminating the need for catalysts preparation. In this paper, asymmetric reduction of 14 aromatic ketones to the corresponding enantiomerically pure alcohols was successfully conducted using the growing and resting cells of marine-derived fungi under optimized conditions. Good yields and excellent enantioselectivities were achieved with both methods. Although substrate inhibition might be a limiting factor for growing cell biotransformation, the selected strain can still completely convert 10-mM substrates into the desired products. The resting cell biotransformation showed a capacity to be recycled nine times without a significant decrease in the activity. This is the first study to perform asymmetric reduction of ketones by one-step growing cell biotransformation.
机译:全细胞生物催化剂为光学活性醇提供了高度对映选择性,污染最小的途径。当前,大多数全细胞催化性能涉及静止细胞而不是生长细胞的生物转化,这是一步步骤,得益于同时生长和生物转化,从而无需催化剂制备。在本文中,利用海洋衍生真菌的生长和静止细胞在优化条件下成功地将14种芳香族酮不对称还原为相应的对映体纯醇。两种方法均获得了良好的收率和出色的对映选择性。尽管底物抑制可能是生长细胞生物转化的限制因素,但所选菌株仍可以将10-mM底物完全转化为所需的产物。静止细胞的生物转化显示出可以回收九次的能力,而活性没有显着降低。这是第一个通过一步生长细胞生物转化进行酮不对称还原的研究。

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