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Establishing an Artificial Pathway for Efficient Biosynthesis of Hydroxytyrosol

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논문

Establishing an Artificial Pathway for Efficient Biosynthesis of Hydroxytyrosol

학술지

ACS Synthetic biology

저자명

Li, Xianglai; Chen, Zhenya; Wu, Yifei; Yan, Yajun; Sun, Xinxiao; Yuan, Qipeng

초록

<P>Hydroxytyrosol (HT) is a valuable natural phenolic compound with strong antioxidant activity and various physiological and pharmaceutical functions. In this study, we established an artificial pathway for HT biosynthesis. First, efficient enzymes were selected to construct a tyrosol biosynthetic pathway. Aro10 from <I>Saccharomyces cerevisiae</I> was shown to be a better ketoacid decarboxylase than Kivd from <I>Lactococcus lactis</I> for tyrosol production. While knockout of <I>feaB</I> significantly decreased accumulation of the byproduct 4-hydroxyphenylacetic acid, overexpression of alcohol dehydrogenase ADH6 further improved tyrosol production. The titers of tyrosol reached 1469 &plusmn; 56 mg/L from tyrosine and 620 &plusmn; 23 mg/L from simple carbon sources, respectively. The pathway was further extended for HT production by overexpressing <I>Escherichia coli</I> native hydroxylase HpaBC. To enhance transamination of tyrosine to 4-hydroxyphenylpyruvate, NH<SUB>4</SUB>Cl was removed from the culture media. To decrease oxidation of HT, ascorbic acid was added to the cell culture. To reduce the toxicity of HT, 1-dodecanol was selected as the extractant for <I>in situ</I> removal of HT. These efforts led to an additive increase in HT titer to 1243 &plusmn; 165 mg/L in the feeding experiment. Assembly of the full pathway resulted in 647 &plusmn; 35 mg/L of HT from simple carbon sources. This work provides a promising alternative for sustainable production of HT, which shows scale-up potential.</P><P><B>Graphic Abstract</B><BR><IMG SRC='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/asbcd6/2018/asbcd6.2018.7.issue-2/acssynbio.7b00385/production/images/medium/sb-2017-00385t_0008.gif'></P><P><A href='http://pubs.acs.org/doi/suppl/10.1021/sb7b00385'>ACS Electronic Supporting Info</A></P>

발행연도

2018

발행기관

American Chemical Society

ISSN

2161-5063

7

2

페이지

pp.647-654

주제어

hydroxytyrosol; microbial synthesis; shikimate pathway; biphasic cultivation; 4-hydroxyphenylacetic acid 3-hydroxylase

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1 2023-12-11

논문; 2018-12-31

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