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首页> 外文期刊>Neurochemical Research >Effect of Ageing and Ischemia on Enzymatic Activities Linked to Krebs’ Cycle, Electron Transfer Chain, Glutamate and Aminoacids Metabolism of Free and Intrasynaptic Mitochondria of Cerebral Cortex
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Effect of Ageing and Ischemia on Enzymatic Activities Linked to Krebs’ Cycle, Electron Transfer Chain, Glutamate and Aminoacids Metabolism of Free and Intrasynaptic Mitochondria of Cerebral Cortex

机译:衰老和缺血对与大脑皮层游离和突触内线粒体克雷布斯循环,电子转移链,谷氨酸和氨基酸代谢有关的酶活性的影响

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摘要

The effect of ageing and the relationships between the catalytic properties of enzymes linked to Krebs’ cycle, electron transfer chain, glutamate and aminoacid metabolism of cerebral cortex, a functional area very sensitive to both age and ischemia, were studied on mitochondria of adult and aged rats, after complete ischemia of 15 minutes duration. The maximum rate (V max) of the following enzyme activities: citrate synthase, malate dehydrogenase, succinate dehydrogenase for Krebs’ cycle; NADH-cytochrome c reductase as total (integrated activity of Complex I–III), rotenone sensitive (Complex I) and cytochrome oxidase (Complex IV) for electron transfer chain; glutamate dehydrogenase, glutamate–oxaloacetate- and glutamate–pyruvate transaminases for glutamate metabolism were assayed in non-synaptic, perikaryal mitochondria and in two populations of intra-synaptic mitochondria, i.e., the light and heavy mitochondrial fraction. The results indicate that in normal, steady-state cerebral cortex, the value of the same enzyme activity markedly differs according (a) to the different populations of mitochondria, i.e., non-synaptic or intra-synaptic light and heavy, (b) and respect to ageing. After 15 min of complete ischemia, the enzyme activities of mitochondria located near the nucleus (perikaryal mitochondria) and in synaptic structures (intra-synaptic mitochondria) of the cerebral tissue were substantially modified by ischemia. Non-synaptic mitochondria seem to be more affected by ischemia in adult and particularly in aged animals than the intra-synaptic light and heavy mitochondria. The observed modifications in enzyme activities reflect the metabolic state of the tissue at each specific experimental condition, as shown by comparative evaluation with respect to the content of energy-linked metabolites and substrates. The derangements in enzyme activities due to ischemia is greater in aged than in adult animals and especially the non-synaptic and the intra-synaptic light mitochondria seems to be more affected in aged animals. These data allow the hypothesis that the observed modifications of catalytic activities in non-synaptic and intra-synaptic mitochondrial enzyme systems linked to energy metabolism, amino acids and glutamate metabolism are primary responsible for the physiopathological responses of cerebral tissue to complete cerebral ischemia for 15 min duration during ageing.
机译:研究了衰老的影响以及与克雷布斯循环相关的酶的催化特性,电子传递链,谷氨酸和大脑皮层(对年龄和局部缺血都非常敏感的功能区域)相关的酶的关系,对成年人和老年人的线粒体进行了研究。大鼠完全缺血后持续15分钟。下列酶活性的最大速率(V max ):柠檬酸合酶,苹果酸脱氢酶,琥珀酸脱氢酶用于克雷布斯循环; NADH-细胞色素C还原酶的总量(复合物I–III的综合活性),鱼藤酮敏感性(复合物I)和细胞色素氧化酶(复合物IV)用于电子转移链;谷氨酸脱氢酶,谷氨酸-草酰乙酸-和谷氨酸-丙酮酸转氨酶用于谷氨酸代谢的非突触线粒体线粒体和两个突触内线粒体,即轻和重线粒体部分。结果表明,在正常,稳定状态的大脑皮层中,相同的酶活性的值根据(a)线粒体的不同群体(即,非突触或突触内轻重),(b)和尊重老龄化。完全缺血15分钟后,缺血后,位于细胞核附近(线粒体线粒体)和脑组织突触结构(突触内线粒体)中的线粒体的酶活性被显着改变。与非突触内线粒体相比,非突触线粒体在成年期尤其是老年动物中受缺血的影响更大。观察到的酶活性变化反映了在每种特定实验条件下组织的代谢状态,如通过对能量连接的代谢物和底物含量的比较评估所示。与成年动物相比,老年动物由于缺血引起的酶活性变化更大,尤其是非突触和突触内轻型线粒体在老年动物中受到的影响更大。这些数据提出了这样的假设:与能量代谢,氨基酸和谷氨酸代谢有关的非突触和突触内部线粒体酶系统中所观察到的催化活性的修饰主要负责大脑组织完成15分钟脑缺血的生理病理反应。持续时间。

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