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基于结构导向的设计以提高醛酮还原酶KdAKR的催化性能。

Structural-guided design to improve the catalytic performance of aldo-keto reductase KdAKR.

作者信息

Dai Chen, Cao Hai-Xing, Tian Jia-Xin, Gao Yan-Chi, Liu Hua-Tao, Xu Shen-Yuan, Wang Ya-Jun, Zheng Yu-Guo

机构信息

Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou, People's Republic of China.

Engineering Research Center of Bioconversion and Biopurification of the Ministry of Education, Zhejiang University of Technology, Hangzhou, Zhejiang, People's Republic of China.

出版信息

Biotechnol Bioeng. 2023 Dec;120(12):3543-3556. doi: 10.1002/bit.28535. Epub 2023 Aug 29.

Abstract

Aldo-keto reductases (AKRs) are important biocatalysts that can be used to synthesize chiral pharmaceutical alcohols. In this study, the catalytic activity and stereoselectivity of a NADPH-dependent AKR from Kluyveromyces dobzhanskii (KdAKR) toward t-butyl 6-chloro (5S)-hydroxy-3-oxohexanoate ((5S)-CHOH) were improved by mutating its residues in the loop regions around the substrate-binding pocket. And the thermostability of KdAKR was improved by a consensus sequence method targeted on the flexible regions. The best mutant M6 (Y28A/L58I/I63L/G223P/Y296W/W297H) exhibited a 67-fold higher catalytic efficiency compared to the wild-type (WT) KdAKR, and improved R-selectivity toward (5S)-CHOH (de value from 47.6% to >99.5%). Moreover, M6 exhibited a 6.3-fold increase in half-life (t ) at 40°C compared to WT. Under the optimal conditions, M6 completely converted 200 g/L (5S)-CHOH to diastereomeric pure t-butyl 6-chloro-(3R, 5S)-dihydroxyhexanoate ((3R, 5S)-CDHH) within 8.0 h, with a space-time yield of 300.7 g/L/day. Our results deepen the understandings of the structure-function relationship of AKRs, providing a certain guidance for the modification of other AKRs.

摘要

醛酮还原酶(AKRs)是重要的生物催化剂,可用于合成手性药用醇。在本研究中,通过突变来自多布扎斯基克鲁维酵母的NADPH依赖性AKR(KdAKR)底物结合口袋周围环区域的残基,提高了其对6-氯(5S)-羟基-3-氧代己酸叔丁酯((5S)-CHOH)的催化活性和立体选择性。并且通过针对柔性区域的共有序列方法提高了KdAKR的热稳定性。最佳突变体M6(Y28A/L58I/I63L/G223P/Y296W/W297H)与野生型(WT)KdAKR相比,催化效率提高了67倍,对(5S)-CHOH的R选择性提高(de值从47.6%提高到>99.5%)。此外,与WT相比,M6在40°C下的半衰期(t)增加了6.3倍。在最佳条件下,M6在8.0小时内将200 g/L的(5S)-CHOH完全转化为非对映体纯的6-氯-(3R,5S)-二羟基己酸叔丁酯((3R,5S)-CDHH),时空产率为300.7 g/L/天。我们的结果加深了对AKRs结构-功能关系的理解,为其他AKRs的改造提供了一定的指导。

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