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Concomitant cell-free biosynthesis of optically pure D-(-)-acetoin and xylitol via a novel NAD+ regeneration in two-enzyme cascade

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    • 바이오플라스틱
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    • 화장품용 기능성소재
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논문

Concomitant cell-free biosynthesis of optically pure D-(-)-acetoin and xylitol via a novel NAD+ regeneration in two-enzyme cascade

학술지

Journal of chemical technology and biotechnology

저자명

Cui, Zhenzhen; Mao, Yufeng; Zhao, Yujiao; Chen, Cong; Tang, Ya‐ Jie; Chen, Tao; Ma, Hongwu; Wang, Zhiwen

초록

<P><B>Abstract</B></P><P><B>BACKGROUND</B></P><P>Acetoin and xylitol are widely used as high&#8208;value platform chemicals with numerous potential applications. The chiral enantiomers L&#8208;(+)&#8208; and D&#8208;(&minus;)&#8208;acetoin are used as pharmaceutical intermediates. Cell&#8208;free biosynthesis has many applications in chemicals production, but efficient methods for production of optically pure acetoin were rarely reported.</P><P><B>RESULTS</B></P><P>A novel two&#8208;enzyme system composed of meso&#8208;2,3&#8208;butanediol dehydrogenase (BDH) and xylose reductase was constructed to co&#8208;produce acetoin and xylitol with NAD<SUP>+</SUP> regeneration. Four BDHs from four candidates, as well as xylose reductase from <I>Candida tenuis</I> were first purified and characterized. The best BDH was then selected according to titers and chiral purities of acetoin. After optimization of reaction conditions, the ratios of meso&#8208;2,3&#8208;butanediol to xylose and BDH to xylose reductase, 28.5 g L<SUP>&minus;1</SUP> D&#8208;(&minus;)&#8208;acetoin with an optical purity of 95.2% was produced in 6 h. The yield and productivity of acetoin was 0.97 g g<SUP>&minus;1</SUP> and 4.75 g L<SUP>&minus;1</SUP> h<SUP>&minus;1</SUP>. The titer of co&#8208;product xylitol was 40.29 g L<SUP>&minus;1</SUP>, and the yield and productivity of xylitol reached 0.98 g g<SUP>&minus;1</SUP> and 6.72 g L<SUP>&minus;1</SUP> h<SUP>&minus;1</SUP>.</P><P><B>CONCLUSIONS</B></P><P>To our best knowledge, this is the first report on the production of optically pure D&#8208;(&minus;)&#8208;acetoin using xylose reductase to regenerate NAD<SUP>+</SUP>, as well as the highest acetoin titer among enzymatic synthesis methods. This work therefore provides an economical and green alternative for the <I>in vitro</I> production of D&#8208;(&minus;)&#8208;acetoin. &copy; 2018 Society of Chemical Industry</P>

발행연도

2018

발행기관

John WileySons, Ltd

ISSN

0268-2575

ISSN

1097-4660

93

12

페이지

pp.3444-3451

주제어

acetoin; meso&#x2010; 2,3&#x2010; butanediol; xylitol; cell&#x2010; free biosynthesis; NAD+ regeneration;

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1 2023-12-11

논문; 2018-12-31

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