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Pichia pastoris ‘just in time’ alternative respiration

机译:Pichia Pastoris'正好在时间替代呼吸

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Alternative oxidases (Aox or Aod) are present in the mitochondria of plants, fungi and many types of yeast. These enzymes transfer electrons from the ubiquinol pool directly to oxygen without contributing to the proton transfer across the mitochondrial membrane. Alternative oxidases are involved in stress responses, programmed cell death and maintenance of the cellular redox balance. The alternative oxidase gene of the methylotrophic yeast Pichia pastoris was isolated and cloned to study its regulation and the effects of deregulation of the alternative respiration by overexpression or disruption of the gene. Both disruption and overexpression had negative effects on the biomass yield; however, the growth rate and substrate uptake rate of the strain overexpressing the alternative oxidase were slightly increased. These effects were even more pronounced when higher glucose concentrations were used. The occurrence of free intracellular radicals and cell death phenomena was investigated using dihydrorhodamine 123 and the TUNEL test. The results suggest a major contribution of the alternative oxidase to P. pastoris cell viability. The negative effects of deregulated alternative respiration clearly indicated the importance of precise regulation of the alternative oxidase in this yeast.
机译:替代氧化酶(AOX或AOD)存在于植物的线粒体,真菌和许多类型的酵母中。这些酶将电子从ubiquinol池直接转移到氧气上,而不会导致模型膜的质子转移。替代氧化酶参与应力响应,编程细胞死亡和细胞氧化还原平衡的维持。分离和克隆甲基辅酶酵母酵母Pichia牧场的替代氧化酶基因,以研究其调节和通过过表达或破坏基因破坏替代呼吸的病程的影响。破坏和过度表达的破坏性对生物质产量产生负面影响;然而,过表达替代氧化酶过表达的菌株的生长速率和血管摄取率略微增加。当使用较高的葡萄糖浓度时,这些效果更加明显。使用二氢倍胺123和TUNEL试验研究了游离细胞内自由基和细胞死亡现象的发生。结果表明替代氧化酶对P.牧场细胞活力的主要贡献。放松管制替代呼吸的负面影响明确表明了该酵母中替代氧化酶精确调节的重要性。

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