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设计一条用于高效生物合成1,5-戊二醇和5-氨基-1-戊醇的节能途径。

Design an Energy-Conserving Pathway for Efficient Biosynthesis of 1,5-Pentanediol and 5-Amino-1-Pentanol.

作者信息

Ma Lin, Xie Chong, Zhang Yu, Li Wenna, An Ning, Shen Xiaolin, Wang Jia, Sun Xinxiao, Yuan Qipeng

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, People's Republic of China.

出版信息

Biotechnol Bioeng. 2025 Feb;122(2):445-451. doi: 10.1002/bit.28875. Epub 2024 Oct 31.

Abstract

1,5-Pentanediol (1,5-PDO) is an important five-carbon alcohol, widely used in polymer and pharmaceutical industries. Considering the substantial energy (ATP and NADPH) requirements of previous pathways, an energy-conserving artificial pathway with a higher theoretical yield (0.75 mol/mol glucose) was designed and constructed in this study. In this pathway, lysine is converted into 1,5-PDO by decarboxylation, two transamination, and two reduction reactions. For the purpose of full pathway construction, 5-aminopetanal reductase and 5-amino-1-pentanol (5-APO) transaminase were identified and characterized. By implementing strategies such as modular optimization of gene expression, enhancing lysine biosynthesis and increasing NADPH supply, the engineered strains were able to produce 1502.8 mg/L 5-APO and 726.2 mg/L 1,5-PDO in shake flasks and 11.7 g/L 1,5-PDO in a 3 L bioreactor. This work provides a new and promising pathway for the efficient production of 5-APO and 1,5-PDO.

摘要

1,5-戊二醇(1,5-PDO)是一种重要的五元醇,广泛应用于聚合物和制药行业。鉴于先前途径对能量(ATP和NADPH)的大量需求,本研究设计并构建了一种具有更高理论产率(0.75 mol/mol葡萄糖)的节能人工途径。在该途径中,赖氨酸通过脱羧、两次转氨和两次还原反应转化为1,5-PDO。为了构建完整的途径,对5-氨基戊醛还原酶和5-氨基-1-戊醇(5-APO)转氨酶进行了鉴定和表征。通过实施基因表达的模块化优化、增强赖氨酸生物合成和增加NADPH供应等策略,工程菌株在摇瓶中能够产生1502.8 mg/L的5-APO和726.2 mg/L的1,5-PDO,在3 L生物反应器中能够产生11.7 g/L的1,5-PDO。这项工作为高效生产5-APO和1,5-PDO提供了一条新的、有前景的途径。

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