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Improvement of ethanol production in Saccharomyces cerevisiae by hetero-expression of GAPN and FPS1 deletion

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논문

Improvement of ethanol production in Saccharomyces cerevisiae by hetero-expression of GAPN and FPS1 deletion

학술지

Journal of chemical technology and biotechnology

저자명

Wang, Pin‐ Mei; Zheng, Dao‐ Qiong; Ding, Rui; Chi, Xiao‐ Qin; Tao, Xiang‐ Lin; Min, Hang; Wu, Xue‐ Chang

초록

<P><B>Abstract</B></P><P><B>BACKGROUND:</B> During anaerobic bioethanol fermentation of <I>Saccharomyces cerevisiae,</I> the main byproduct glycerol is essential to regulate redox balance (reoxidize NADH to NAD<SUP>+</SUP>), which is necessary to maintain cell growth and fermentation. Hetero&#8208;expression of a NADP<SUP>+</SUP>&#8208;dependent glyceraldehydes&#8208;3&#8208;phosphate dehydrogenase (GAPN) [EC.1.2.1.9] in <I>S. cerevisiae</I> could redirect the carbon flux from glycerol to ethanol involving a net oxidation of NADH. The present study investigates whether combination of GAPN hetero&#8208;expression and glycerol exporter Fps1p disruption would result in less glycerol and more ethanol production without affecting growth rate during anaerobic fermentations.</P><P><B>RESULTS:</B> The results of anaerobic fermentations showed that the <I>fps1</I>&Delta; mutant with GAPN (named 4FG) produced 21.47% less glycerol and 9.18% more ethanol compared with a parental strain with a control plasmid, while the rates of growth and fermentation were not changed. Moreover, the engineered strain 4FG yielded less glycerol and acetic acid, and more ethanol than the control, <I>fps1</I>&Delta; mutant or with GAPN only.</P><P><B>CONCLUSIONS:</B> During anaerobic fermentations, hetero&#8208;expression of GAPN restored the reduced grow rate of the <I>fps1</I>&Delta; mutant, and led to less byproducts and more ethanol production. This combination strategy could be used to modulate glycerol metabolism and optimize the anaerobic fermentation of <I>S. cerevisiae</I>. Copyright &copy; 2011 Society of Chemical Industry</P>

발행연도

2011

발행기관

John Wiley Sons, Ltd.

ISSN

0268-2575

ISSN

1097-4660

86

9

페이지

pp.1205-1210

주제어

ethanol; FPS1; glycerol; glyceraldehydes&#x2010; 3&#x2010; phosphate dehydrogenase; Saccharomyces cerevisiae; Streptococcus mutans;

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논문; 2011-04-14

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