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Metabolic Engineering of Mortierella alpina for Enhanced Arachidonic Acid Production through the NADPH-Supplying Strategy

机译:通过NADPH供应策略提高高山被孢霉的代谢工程水平

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NADPH is known to be a key cofactor required for fatty acid synthesis and desaturation. Various enzymatic reactions can generate NADPH. To determine the effect of NADPH sources on lipogenesis, glucose-6-phosphate dehydrogenase (G6PD), 6-phosphogluconate dehydrogenase (PGD), isocitrate dehydrogenase (IDH), and malic enzyme (ME) were overexpressed in Mortierella alpina . Our results showed that G6PD2 had the most significant effect on fatty acid synthesis, with a 1.7-fold increase in total fatty acid, whereas ME2 was more effective in desaturation, with a 1.5-fold increase in arachidonic acid (AA) content over control. Co-overexpression of G6PD2 and ME2 improved both fatty acid synthesis and desaturation. Within 96 h of fermentation using the fed-batch method, the co-overexpressing strain accumulated AA at a productivity of 1.9 ± 0.2 g/(liter · day), which was 7.2-fold higher than that in the M. alpina control that was cultured in a flask.IMPORTANCE This study proved that the pentose phosphate pathway is the major NADPH contributor during fatty acid synthesis in M. alpina . The NADPH sources may be differently responsible for fatty acid synthesis or desaturation. Co-overexpression of G6PD2 and ME2 significantly increases AA production.
机译:已知NADPH是脂肪酸合成和去饱和所需的关键辅因子。各种酶促反应均可产生NADPH。为了确定NADPH来源对脂肪生成的影响,在高山被孢霉中过量表达了6-磷酸葡萄糖脱氢酶(G6PD),6-磷酸葡糖酸脱氢酶(PGD),异柠檬酸脱氢酶(IDH)和苹果酸酶(ME)。我们的结果表明,G6PD2对脂肪酸合成的影响最大,总脂肪酸增加了1.7倍,而ME2在去饱和方面更有效,花生四烯酸(AA)含量比对照增加了1.5倍。 G6PD2和ME2的共过量表达可改善脂肪酸的合成和去饱和度。在使用补料分批法发酵的96小时内,共同表达的菌株以1.9±0.2 g /(升·天)的生产力积累了AA,比高山分枝杆菌对照高7.2倍。重要这项研究证明,磷酸戊糖途径是高山苜蓿脂肪酸合成过程中NADPH的主要贡献者。 NADPH源可能对脂肪酸的合成或去饱和作用有不同的作用。 G6PD2和ME2的共过量表达显着提高了AA产量。

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