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NADH dehydrogenase deficiency results in low respiration rate and improved aerobic growth of Zymomonas mobilis

机译:NADH脱氢酶缺乏导致低呼吸率和Zymomonas Mobilis的有氧生长

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The respiratory chain of the ethanol-producing bacterium Zymomonas mobilis is able to oxidize both species of nicotinamide cofactors, NADH and NADPH. A mutant strain with a chloramphenicol-resistance determinant inserted in ndh (encoding an NADH?:?CoQ oxidoreductase of type II) lacked the membrane NADH and NADPH oxidase activities, while its respiratory d-lactate oxidase activity was increased. Cells of the mutant strain showed a very low respiration rate with glucose and no respiration with ethanol. The aerobic growth rate of the mutant was elevated; exponential growth persisted longer, resulting in higher biomass densities. For the parent strain a similar effect of aerobic growth stimulation was achieved previously in the presence of submillimolar cyanide concentrations. It is concluded (i) that the respiratory chain of Z. mobilis contains only one functional NAD(P)H dehydrogenase, product of the ndh gene, and (ii) that inhibition of respiration, whether resulting from a mutation or from inhibitor action, stimulates Z. mobilis aerobic growth due to redirection of the NADH flux from respiration to ethanol synthesis, thus minimizing accumulation of toxic intermediates by contributing to the reduction of acetaldehyde to ethanol.
机译:乙醇生产细菌Zymomonas Mobilis的呼吸链能够氧化两种烟醇酰胺辅因子,NADH和NADPH。具有插入NDH的氯霉素抗性决定簇的突变菌株(编码NADH?:β氧化还原酶的II型)缺乏膜NADH和NADPH氧化酶活性,而其呼吸D-乳酸氧化酶活性增加。突变菌株的细胞显示出非常低的呼吸速率,葡萄糖和乙醇没有呼吸。突变体的有氧生长速率升高;指数增长持续更长时间,导致生物量密度更高。对于亲本菌株,先前在亚硫醇氰化物浓度存在下实现了有氧生长刺激的类似效果。结论(i)Z.Mobilis的呼吸链仅含有一种功能性NAD(P)H脱氢酶,NDH基因的产物,以及(ii)抑制呼吸,无论是由突变还是来自抑制剂作用,刺激Z.Mobilis有氧生长由于NADH通量从呼吸中的呼吸转向到乙醇合成,从而最大限度地减少有毒中间体的积累,通过促进乙醛还原乙醇。

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