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Improved bioethanol production in an engineered Kluyveromyces lactis strain shifted from respiratory to fermentative metabolism by deletion of NDI1

机译:通过缺失NDI1工程化乳酸克鲁维酵母菌株中改善的生物乙醇生产从呼吸代谢转变为发酵代谢

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摘要

In this paper, we report the metabolic engineering of the respiratory yeast Kluyveromyces lactis by construction and characterization of a null mutant (Δklndi1) in the single gene encoding a mitochondrial alternative internal dehydrogenase. Isolated mitochondria of the Δklndi1 mutant show unaffected rate of oxidation of exogenous NADH, but no oxidation of matrix NADH; this confirms that KlNdi1p is the only internal NADH dehydrogenase in K. lactis mitochondria. Permeabilized cells of the Δklndi1 mutant do not show oxidation of matrix NADH, which suggests that shuttle systems to transfer the NADH from mitochondrial matrix to cytosol, for being oxidized by external dehydrogenases, are not functional. The Δklndi1 mutation decreases the chronological life span in absence of nutrients. The expression of KlNDI1 is increased by glutathione reductase depletion. The Δklndi1 mutation shifts the K. lactis metabolism from respiratory to fermentative: the Δklndi1 strain shows reduced respiration rate and increased ethanol production from glucose, while it does not grow in non-fermentable carbon sources such as lactate. The biotechnological benefit of the Δklndi1 mutant for bioethanol production from waste cheese whey lactose was proved.
机译:在本文中,我们通过编码线粒体内部内部脱氢酶的单个基因中的空突变体(Δklndi1)的构建和表征,报告了呼吸酵母乳酸克鲁维酵母的代谢工程。 Δklndi1突变体的分离线粒体显示外源NADH的氧化率不受影响,但基质NADH的氧化率不受影响。这证实了KlNdi1p是乳酸杆菌线粒体中唯一的内部NADH脱氢酶。 Δklndi1突变体的透化细胞未显示出基质NADH的氧化,这表明将NADH从线粒体基质转移到细胞质中以被外部脱氢酶氧化的穿梭系统没有功能。在缺乏营养的情况下,Δklndi 1 突变会缩短其寿命。谷胱甘肽还原酶耗竭可增加 KlNDI 1 的表达。 Δ klndi 1 突变使 K 移位。乳酸从呼吸到发酵的代谢:Δ klndi 1 菌株显示呼吸速率降低和葡萄糖中乙醇的产生增加,而不会在不可发酵的碳源(如乳酸)中生长。证明了Δ klndi 1 突变体对废奶酪乳清乳糖生产生物乙醇的生物技术优势。

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