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脊椎动物和无脊椎动物肌肉中的甘油激酶活性。

Glycerol kinase activities in muscles from vertebrates and invertebrates.

作者信息

Newsholme E A, Taylor K

出版信息

Biochem J. 1969 May;112(4):465-74. doi: 10.1042/bj1120465.

Abstract
  1. Glycerol kinase (EC 2.7.1.30) activity was measured in crude extracts of skeletal muscles by a radiochemical method. The properties of the enzyme from a number of different muscles are very similar to those of the enzyme from rat liver. Glycerol kinase from locust flight muscle was inhibited competitively by l-3-glycerophosphate with a K(i) of 4.0x10(-4)m. 2. The activity of glycerol kinase was measured in a variety of muscles from vertebrates and invertebrates in an attempt to explain the large variation in the activity of this enzyme in different muscles. 3. In vertebrates glycerol kinase activities were generally higher in red muscle than in white muscle; the highest activities (approx. 0.2mumole/min./g. fresh wt.) were found in the red breast muscle of some birds (e.g. pigeon, duck, blue tit) whereas the activities in the white breast muscle of the pheasant and domestic fowl were very low (approx. 0.02mumole/min./g.). 4. On the basis of glycerol kinase activities, muscles from insects can be classified into three groups: muscles that have a low enzyme activity, i.e. <0.3mumole/min./g. (leg muscles of all insects studied and the flight muscles of cockroaches and the tsetse fly); muscles that have an intermediate enzyme activity, i.e. 0.3-1.5mumoles/min./g. (e.g. locusts, cockchafers, moths, water-bugs); and muscles that have a high enzyme activity, i.e. >1.5mumoles/min./g. (e.g. bees, wasps, some blowflies). 5. The function of glycerol kinase in vertebrate and insect muscles that possess a low or intermediate activity is considered to be the removal of glycerol that is produced from lipolysis of triglyceride or diglyceride by the muscle. Therefore in these muscles the activity of glycerol kinase is related to the metabolism of fat, which is used to support sustained muscular activity. A possible regulatory role of glycerol kinase in the initiation of triglyceride or diglyceride lipolysis is discussed. 6. The function of glycerol kinase in the insect muscles that possess a high activity of the enzyme is considered to be related to the high rates of glycolysis that these muscles can perform. The oxidation of extramitochondrial NADH, and therefore the maintenance of glycolysis, is dependent on the functioning of the glycerophosphate cycle; if at any stage of flight (e.g. at the start) the rate of mitochondrial oxidation of l-3-glycerophosphate was less than the activity of the extramitochondrial glycerophosphate dehydrogenase, this compound would accumulate, inhibit the latter enzyme and inhibit glycolysis. It is suggested that such excessive accumulation of l-3-glycerophosphate is prevented by hydrolysis of this compound to glycerol; the latter would have to be removed from the muscle when the accumulation of l-3-glycerophosphate had stopped, and this would explain the presence of glycerol kinase in these muscles and its inhibition by l-3-glycerophosphate.
摘要
  1. 采用放射化学方法测定骨骼肌粗提物中的甘油激酶(EC 2.7.1.30)活性。来自多种不同肌肉的该酶性质与大鼠肝脏中的酶非常相似。蝗虫飞行肌中的甘油激酶被L-3-甘油磷酸竞争性抑制,抑制常数K(i)为4.0×10⁻⁴m。2. 测定了脊椎动物和无脊椎动物多种肌肉中的甘油激酶活性,试图解释该酶在不同肌肉中活性差异巨大的原因。3. 在脊椎动物中,红色肌肉中的甘油激酶活性通常高于白色肌肉;在一些鸟类(如鸽子、鸭子、蓝山雀)的红色胸肌中发现了最高活性(约0.2微摩尔/分钟/克鲜重),而雉鸡和家禽白色胸肌中的活性非常低(约0.02微摩尔/分钟/克)。4. 根据甘油激酶活性,昆虫的肌肉可分为三组:酶活性低的肌肉,即<0.3微摩尔/分钟/克(所有研究昆虫的腿部肌肉以及蟑螂和采采蝇的飞行肌肉);酶活性中等的肌肉,即0.3 - 1.5微摩尔/分钟/克(如蝗虫、金龟子、蛾、水蝽);酶活性高的肌肉,即>1.5微摩尔/分钟/克(如蜜蜂、黄蜂、一些绿头苍蝇)。5. 在具有低或中等活性的脊椎动物和昆虫肌肉中,甘油激酶的功能被认为是清除肌肉中由甘油三酯或甘油二酯脂解产生的甘油。因此,在这些肌肉中,甘油激酶的活性与脂肪代谢有关,脂肪用于支持持续的肌肉活动。讨论了甘油激酶在甘油三酯或甘油二酯脂解起始过程中可能的调节作用。6. 在具有高酶活性的昆虫肌肉中,甘油激酶的功能被认为与这些肌肉能够进行的高糖酵解速率有关。线粒体外NADH的氧化,进而糖酵解的维持,依赖于甘油磷酸循环的运作;如果在飞行的任何阶段(如开始时)L-3-甘油磷酸的线粒体氧化速率低于线粒体外甘油磷酸脱氢酶的活性,该化合物就会积累,抑制后者的酶并抑制糖酵解。有人提出,L-3-甘油磷酸的这种过度积累可通过该化合物水解为甘油来防止;当L-3-甘油磷酸的积累停止时,后者必须从肌肉中清除,这就解释了这些肌肉中甘油激酶的存在及其被L-3-甘油磷酸抑制的现象。

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本文引用的文献

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Cell structure and the metabolism of insect flight muscle.昆虫飞行肌的细胞结构与代谢
J Biophys Biochem Cytol. 1955 Jan;1(1):29-46. doi: 10.1083/jcb.1.1.29.

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