首页> 美国卫生研究院文献>Biochemical Journal >The activities of phosphorylase hexokinase phosphofructokinase lactate dehydrogenase and the glycerol 3-phosphate dehydrogenase in muscles from vertebrates and invertebrates
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The activities of phosphorylase hexokinase phosphofructokinase lactate dehydrogenase and the glycerol 3-phosphate dehydrogenase in muscles from vertebrates and invertebrates

机译:脊椎动物和无脊椎动物肌肉中磷酸化酶己糖激酶磷酸果糖激酶乳酸脱氢酶和3-磷酸甘油脱氢酶的活性

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摘要

1. The maximum activities of hexokinase, phosphorylase and phosphofructokinase have been measured in extracts from a variety of muscles and they have been used to estimate the maximum rates of operation of glycolysis in muscle. These estimated rates of glycolysis are compared with those calculated for the intact muscle from such information as oxygen uptake, glycogen degradation and lactate formation. Reasonable agreement between these determinations is observed, and this suggests that such enzyme activity measurements may provide a useful method for comparative investigations into quantitative aspects of maximum glycolytic flux in muscle. 2. The enzyme activities from insect flight muscle confirm and extend much of the earlier work and indicate the type of fuel that can support insect flight. The maximum activity of hexokinase in some insect flight muscles is about tenfold higher than that in vertebrate muscles. The activity of phosphorylase is greater, in general, in vertebrate muscle (particularly white muscle) than in insect flight muscle. This is probably related to the role of glycogen breakdown in vertebrate muscle (particularly white muscle) for the provision of ATP from anaerobic glycolysis and not from complete oxidation of the glucose residues. The activity of hexokinase was found to be higher in red than in white vertebrate muscle, thus confirming and extending earlier reports. 3. The maximum activity of the mitochondrial glycerophosphate dehydrogenase was always much lower than that of the cytoplasmic enzyme, indicating that the former enzyme is rate-limiting for the glycerol 3-phosphate cycle. From the maximum activity of the mitochondrial enzyme it can be calculated that the operation of this cycle would account for the reoxidation of all the glycolytically produced NADH in insect flight muscle but it could account for only a small amount in vertebrate muscle. Other mechanisms for this NADH reoxidation in vertebrate muscle are discussed briefly.
机译:1.在各种肌肉的提取物中已测出己糖激酶,磷酸化酶和磷酸果糖激酶的最大活性,已将它们用于估算肌肉中糖酵解的最大作用速率。将这些估计的糖酵解速率与从完整的肌肉根据氧气吸收,糖原降解和乳酸形成等信息计算得出的速率进行比较。观察到这些测定之间的合理一致,这表明这种酶活性测定可为比较研究肌肉中最大糖酵解通量的定量方面提供有用的方法。 2.来自昆虫飞行肌肉的酶活性证实并扩展了许多早期工作,并表明了可支持昆虫飞行的燃料类型。某些昆虫飞行肌肉中己糖激酶的最大活性比脊椎动物肌肉中的最大约高十倍。通常,在脊椎动物的肌肉(尤其是白肌肉)中,磷酸化酶的活性比在昆虫飞行的肌肉中更高。这可能与糖原分解在脊椎动物肌肉(尤其是白肌肉)中的作用有关,后者通过厌氧糖酵解而不是葡萄糖残基的完全氧化来提供ATP。发现己糖激酶的活性在红色中比在白色脊椎动物肌肉中更高,因此证实并扩展了早期报道。 3.线粒体甘油磷酸脱氢酶的最大活性总是比细胞质酶低得多,这表明前者对3-磷酸甘油循环具有限速作用。根据线粒体酶的最大活性,可以计算出该循环的运行将解释昆虫逃逸肌肉中所有糖酵解产生的NADH的再氧化,但在脊椎动物肌肉中仅占少量。简要讨论了这种NADH在脊椎动物肌肉中再氧化的机制。

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