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Characterization of erythrose reductase from Yarrowia lipolytica and its influence on erythritol synthesis

机译:Yarrowia Lipolytica的红细胞还原酶的表征及其对赤藓糖醇合成的影响

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Abstract Background Erythritol is a natural sweetener that is used in the food industry. It is produced as an osmoprotectant by bacteria and yeast. Due to its chemical properties, it does not change the insulin level in the blood, and therefore it can be safely used by diabetics. Previously, it has been shown that erythrose reductase (ER), which catalyzes the final step, plays a crucial role in erythritol synthesis. ER reduces erythrose to erythritol with NAD(P)H as a cofactor. Despite many studies on erythritol synthesis by Yarrowia lipolytica, the enzymes involved in this metabolic pathway have ever been described. Results The gene YALI0F18590g encoding the predicted erythrose reductase from Y. lipolytica was overexpressed, and its influence on erythritol synthesis was studied. The amino acid sequence of the Y. lipolytica ER showed a high degree of similarity to the previously described erythrose reductases from known erythritol producers, such as Candida magnoliae and Moniliella megachiliensis. Here, we found that the gene overexpression results in an enhanced titer of erythritol of 44.44 g/L (20% over the control), a yield of 0.44 g/g and productivity of 0.77 g/L/h. Moreover, on purification and characterization of the enzyme we found that it displays the highest activity at 37 °C and pH 3.0. The effects of various metal ions (Zn2+, Cu2+, Mn2+, Fe2+) on erythrose reductase were investigated. The addition of Zn2+ ions at 0.25 mM had a positive effect on the activity of erythrose reductase from Y. lipolytica, as well as on the erythritol production. Conclusions In this study we identified, overexpressed and characterized a native erythrose reductase in Y. lipolytica. Further optimizations of this strain via metabolic pathway engineering and media optimization strategies enabled 54 g/L to be produced in a shake-flask experiment. To date, this is the first reported study employing metabolic engineering of the native gene involved in the erythritol pathway to result in a high titer of the polyol. Moreover, it indicates the importance of environmental conditions for genetic targets in metabolic engineering.
机译:摘要背景红霉是食品工业中使用的天然甜味剂。它是由细菌和酵母制成的渗透剂。由于其化学性质,它不会改变血液中的胰岛素水平,因此它可以被糖尿病患者安全使用。以前,已经表明,催化最终步骤的红细胞还原酶(ER)在红细胞合成中起着至关重要的作用。 ER用NAD(P)H作为辅助因子用NERTHROSOL减少红绿核醇。尽管Yarrowia Lipolytica的赤藓糖醇合成了许多研究,但曾曾描述过这种代谢途径的酶。结果从Y. Lipolytica编码预测的射出还原酶的基因YALI0F18590G过表达,研究了其对赤藓糖醇合成的影响。 Y. Lipolytica Er的氨基酸序列与来自已知的赤藓糖醇生产者的先前描述的红霉素还原酶,例如Cantida Magnoliae和Moniliella Megachiliensis的氨基酸序列显示出高度相似性。这里,我们发现基因过表达导致44.44g / L的赤藓糖醇增强滴度(对照的20%),产率为0.44g / g,生产率为0.77g / l / h。此外,关于酶的纯化和表征,我们发现它在37℃和pH 3.0处显示最高活性。研究了各种金属离子(Zn2 +,Cu2 +,Mn2 +,Fe2 +,Fe2 +)对红绿糖果还原酶的影响。在0.25mm下加入Zn2 +离子对来自Y.脂肪醇的红绿菌素还原酶的活性以及赤藓糖醇生产具有阳性作用。结论在该研究中,我们鉴定,过表达和表征Y.Inytholytica的天然红绿菌化还原酶。通过代谢途径工程和媒体优化策略的进一步优化该应变能够在摇瓶实验中产生54克/升。迄今为止,这是第一个据报道的研究,采用赤藓糖醇途径中涉及的天然基因的代谢工程导致多元醇的高滴度。此外,它表明了新陈代谢工程中遗传目标的环境条件的重要性。

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