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线粒体功能对酵母糖酵解振荡的动态调控

Dynamic regulation of yeast glycolytic oscillations by mitochondrial functions.

作者信息

Aon M A, Cortassa S, Westerhoff H V, Berden J A, Van Spronsen E, Van Dam K

机构信息

E.C. Slater Institute for Biochemical Research and Biotechnological Center, University of Amsterdam, The Netherlands.

出版信息

J Cell Sci. 1991 Jun;99 ( Pt 2):325-34. doi: 10.1242/jcs.99.2.325.

Abstract

The control exerted in vivo by mitochondrial functions on the dynamics of glycolysis was investigated in starved yeast cells that were metabolizing glucose semianaerobically. Glycolytic oscillations were triggered after a pulse of glucose by inhibition of mitochondrial respiration with KCN, myxothiazol and antimycin A or in mutants in the bc1 complex (ubiquinol:cytochrome c reductase) that were largely deficient in respiratory capacity. Inhibition of the adenine nucleotide translocator by preincubation with bongkrekic acid also triggered a train of damped sinusoidal oscillations after glucose addition. The oscillations consisted of cycles of reduction and oxidation of the intracellular pool of nicotinamide nucleotides with periods of 45 s to 1 min and amplitudes of 0.8 mM or lower. Preincubation with the uncoupler carbonyl cyamide p-(trifluoromethoxy)phenylhydrazone (FCCP) annihilated cyanide-induced oscillations of NAD(P)H. Evidence for de-energization of mitochondrial membranes in vivo was obtained by mitochondrial staining with dimethylaminostyryl-methyl-pyridiniumiodine (DASPMI) of starved cells. The low rates of NADH reoxidation shown by respiratory mutants and the FCCP-treated X2180 strain open up the possibility that mitochondrial dehydrogenases also control glycolytic oscillations. Low rates of cytosolic NADH reoxidation induced by pyrazole, an inhibitor of alcohol dehydrogenase, were also associated with the disappearance of glycolytic oscillations. From experimental evidence and model calculations we conclude that the modulation of the levels of cytosolic ATP by mitochondrial functions in turn modulates the approach of the dynamic behavior of glycolysis to an oscillatory domain. The mitochondrial NADH dehydrogenase and the glycolytic steps associated with NADH reoxidation downstream from pyruvate appear to provide another control level of glycolysis dynamics in vivo.

摘要

在半厌氧代谢葡萄糖的饥饿酵母细胞中,研究了线粒体功能在体内对糖酵解动力学的控制作用。在用KCN、黏噻唑和抗霉素A抑制线粒体呼吸后,或在呼吸能力严重缺陷的bc1复合物(泛醌:细胞色素c还原酶)突变体中,葡萄糖脉冲后会引发糖酵解振荡。用硼酸霉素预孵育抑制腺嘌呤核苷酸转位酶后,添加葡萄糖也会引发一系列阻尼正弦振荡。这些振荡由烟酰胺核苷酸细胞内池的还原和氧化循环组成,周期为45秒至1分钟,振幅为0.8 mM或更低。用解偶联剂羰基氰化物对-(三氟甲氧基)苯腙(FCCP)预孵育可消除氰化物诱导的NAD(P)H振荡。通过用二甲基氨基苯乙烯基-甲基-吡啶碘(DASPMI)对饥饿细胞进行线粒体染色,获得了体内线粒体膜去极化的证据。呼吸突变体和FCCP处理的X2180菌株显示的NADH再氧化率较低,这表明线粒体脱氢酶也可能控制糖酵解振荡。乙醇脱氢酶抑制剂吡唑诱导的胞质NADH再氧化率较低,也与糖酵解振荡的消失有关。根据实验证据和模型计算,我们得出结论,线粒体功能对胞质ATP水平的调节反过来又调节了糖酵解动态行为向振荡域的趋近。线粒体NADH脱氢酶以及丙酮酸下游与NADH再氧化相关的糖酵解步骤似乎在体内提供了糖酵解动力学的另一个控制水平。

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