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通过代谢工程利用大豆乳清生物合成()-雌马酚

Biosynthesis of ()-Equol from Soy Whey by Metabolically Engineered .

作者信息

Wang Zhe, Li Xiaonan, Azi Fidelis, Dai Yiqiang, Xu Zhuang, Yu Lijun, Zhou Jianzhong, Dong Mingsheng, Xia Xiudong

机构信息

Institute of Agro-Product Processing, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

J Agric Food Chem. 2023 Apr 11. doi: 10.1021/acs.jafc.3c00439.

Abstract

()-Equol is one of the most bioactive metabolites of the isoflavones with immense nutritional and pharmaceutical value. Soy whey is the major liquid byproduct of the soy product processing industries that is rich in nutrients and ()-equol biosynthetic precursor daidzin. However, it is usually disposed into the sewage, causing high environmental contamination. Herein, we constructed a recombinant for the biosynthesis of ()-equol from soy whey. First, we evaluated daidzin-specific transporters and optimized the anaerobically induced P in the ()-equol biosynthesis cassette to produce ()-equol from daidzin. Then, sucrase and α-galactosidase were co-expressed to confer sucrose, stachyose, and raffinose utilization capacity on . Meanwhile, EIIBCA was inactivated to eliminate the daidzin transport inhibition induced by glucose. Finally, combining these strategies and optimizing the fermentation conditions, the optimal strain produced 91.5 mg/L of ()-equol with a yield of 0.96 mol/mol substrates in concentrated soy whey. Overall, this new strategy is an attractive route to broaden the applications of soy whey and achieve the eco-friendly production of ()-equol.

摘要

()-雌马酚是异黄酮中生物活性最强的代谢产物之一,具有巨大的营养和药用价值。大豆乳清是豆制品加工业的主要液体副产品,富含营养物质和()-雌马酚生物合成前体黄豆苷。然而,它通常被排入污水,造成严重的环境污染。在此,我们构建了一种重组体用于从大豆乳清中生物合成()-雌马酚。首先,我们评估了黄豆苷特异性转运蛋白,并优化了()-雌马酚生物合成盒中厌氧诱导的P,以从黄豆苷生产()-雌马酚。然后,共表达蔗糖酶和α-半乳糖苷酶,使重组体具有利用蔗糖、水苏糖和棉子糖的能力。同时,使EIIBCA失活以消除葡萄糖诱导的黄豆苷转运抑制。最后,结合这些策略并优化发酵条件,最佳菌株在浓缩大豆乳清中产生了91.5mg/L的()-雌马酚,底物产率为0.96mol/mol。总体而言,这种新策略是拓宽大豆乳清应用范围并实现()-雌马酚环保生产的有吸引力途径。

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