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Deletion or Overexpression of Mitochondrial NAD+ Carriers in Saccharomyces cerevisiae Alters Cellular NAD and ATP Contents and Affects Mitochondrial Metabolism and the Rate of Glycolysis

机译:酿酒酵母中线粒体NAD +载体的缺失或过表达改变细胞NAD和ATP含量并影响线粒体代谢和糖酵解速率

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The modification of enzyme cofactor concentrations can be used as a method for both studying and engineering metabolism. We varied Saccharomyces cerevisiae mitochondrial NAD levels by altering expression of its specific mitochondrial carriers. Changes in mitochondrial NAD levels affected the overall cellular concentration of this coenzyme and the cellular metabolism. In batch culture, a strain with a severe NAD depletion in mitochondria succeeded in growing, albeit at a low rate, on fully respiratory media. Although the strain increased the efficiency of its oxidative phosphorylation, the ATP concentration was low. Under the same growth conditions, a strain with a mitochondrial NAD concentration higher than that of the wild type similarly displayed a low cellular ATP level, but its growth rate was not affected. In chemostat cultures, when cellular metabolism was fully respiratory, both mutants showed low biomass yields, indicative of impaired energetic efficiency. The two mutants increased their glycolytic fluxes, and as a consequence, the Crabtree effect was triggered at lower dilution rates. Strikingly, the mutants switched from a fully respiratory metabolism to a respirofermentative one at the same specific glucose flux as that of the wild type. This result seems to indicate that the specific glucose uptake rate and/or glycolytic flux should be considered one of the most important independent variables for establishing the long-term Crabtree effect. In cells growing under oxidative conditions, bioenergetic efficiency was affected by both low and high mitochondrial NAD availability, which suggests the existence of a critical mitochondrial NAD concentration in order to achieve optimal mitochondrial functionality.
机译:酶辅因子浓度的改变可用作研究和工程代谢的方法。我们通过改变其特定线粒体载体的表达来改变酿酒酵母线粒体NAD的水平。线粒体NAD水平的变化影响了该辅酶的总体细胞浓度和细胞代谢。在分批培养中,线粒体中具有严重NAD耗竭的菌株在完全呼吸介质上成功生长,尽管增长率很低。尽管该菌株提高了其氧化磷酸化的效率,但ATP浓度较低。在相同的生长条件下,线粒体NAD浓度高于野生型的菌株同样显示出较低的细胞ATP水平,但其生长速率并未受到影响。在化学恒温培养中,当细胞代谢完全为呼吸时,两个突变体均显示出较低的生物量产量,表明能量效率受损。这两个突变体增加了其糖酵解通量,因此,在较低的稀释率下触发了Crabtree效应。令人惊讶的是,这些突变体以与野生型相同的特定葡萄糖通量从完全呼吸代谢转变为呼吸穿孔性代谢。该结果似乎表明,应将特定的葡萄糖摄取速率和/或糖酵解通量视为建立长期Crabtree效应的最重要的独立变量之一。在氧化条件下生长的细胞中,线粒体NAD的高低均会影响生物能效率,这表明存在临界线粒体NAD浓度以实现最佳线粒体功能。

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