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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >VDAC electronics: 4. Novel electrical mechanism and thermodynamic estimations of glucose repression of yeast respiration
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VDAC electronics: 4. Novel electrical mechanism and thermodynamic estimations of glucose repression of yeast respiration

机译:VDAC电子:4。新型电气机理和热力学估算葡萄糖抑制酵母呼吸

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摘要

Inhibition of cell respiration by high concentrations of glucose (glucose repression), known as "Crabtree effect", has been demonstrated for various cancerous strains, highly proliferating cells and yeast lines. Although significant progress in understanding metabolic events associated with the glucose repression of cell respiration has been achieved, it is not yet clear whether the Crabtree effect is the result of a limited activity of the respiratory chain, or of some glucose-mediated regulation of mitochondrial metabolic state. In this work we propose an electrical mechanism of glucose repression of the yeast S. cerevisiae, resulting from generation of the mitochondrial outer membrane potential (OMP) coupled to the direct oxidation of cytosolic NADH in mitochondria. This yeast-type mechanism of OMP generation is different from the earlier proposed VDAC-hexokinase-mediated voltage generation of cancer-type, associated with the mitochondrial outer membrane. The model was developed assuming that VDAC is more permeable to NADH than to NAD+. Thermodynamic estimations of OMP, generated as a result of NADH(2-)/NAD(+) (1-) turnover through the outer membrane, demonstrated that the values of calculated negative OMP match the known range of VDAC voltage sensitivity, thus suggesting a possibility of OMP-dependent VDAC-mediated regulation of cell energy metabolism. According to the proposed mechanism, we suggest that the yeast-type Crabtree effect is the result of a fast VDAC-mediated electrical repression of mitochondria due to a decrease in the outer membrane permeability to charged metabolites and owing their redistribution between the mitochondrial intermembrane space and the cytosol, both controlled by metabolically-derived OMP.
机译:通过高浓度的葡萄糖(葡萄糖抑制)抑制细胞呼吸,称为“Crabtree效应”,已经证明了各种癌症菌株,高增殖的细胞和酵母系。虽然已经实现了了解与葡萄糖抑制细胞呼吸相关的代谢事件的显着进展,但尚不清楚Crabtree效应是否是呼吸链的有限活性的结果,或一些葡萄糖介导的线粒体代谢调节状态。在这项工作中,我们提出了葡萄糖抑制酵母酿酒酵母的电动机制,这是发电由线粒体外膜电位(OMP)的产生,所述线粒体外膜电位(OMP)偶联于线粒体中的细胞溶质NADH的直接氧化。该OMP生成的酵母型机制与先前提出的VDAC-六酮酶介导的癌症型的电压产生不同,与线粒体外膜相关。假设VDAC对NADH比NAD +更渗透,开发了该模型。通过外膜的NADH(2 - )/ NAD(+)(1-)换档产生的OMP的热力学估计,证明了计算的负OMP的值与已知的VDAC电压灵敏度范围相匹配,因此表明了一个OMP依赖性VDAC介导的细胞能量代谢调节的可能性。根据提出的机制,我们建议酵母型Crabtree效应是由于外膜渗透率的降低,在线粒体膜空间和线粒体间隙之间的再分布,因此酵母型Crabtree效应是线粒体的快速VDAC介导的线粒体的电抑制的结果。通过代谢衍生的OMP控制的胞质溶胶。

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