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钠钾刺激的三磷酸腺苷酶活性在离体神经末梢颗粒中的分布

Distribution of sodium-plus-potassium-stimulated adenosine-triphosphatase activity in isolated nerve-ending particles.

作者信息

Kurokawa M, Kato M, Sakamoto T

出版信息

Biochem J. 1965 Dec;97(3):833-44. doi: 10.1042/bj0970833.

Abstract
  1. A rapid method for the isolation of nerve-ending particles from brain is described. This involved the centrifugation of the large-granule fraction over a discontinuous density gradient consisting of 3% (w/v) and 13% (w/v) Ficoll dissolved in 0.32m-sucrose. The results of the biochemical as well as morphological identification of nerve-ending particles are given. 2. Approx. 20% of the (Na(+)+K(+))-stimulated adenosine-triphosphatase activity originally present in the cerebral grey-matter suspension was recovered in the fraction consisting principally of large nerve-ending particles (approx. 1mu in diameter). The activity of the adenosine triphosphatase/mg. of protein in the nerve-ending fraction approximated to that in the small-granule fraction after the treatment with glycol ether diamine-tetra-acetic acid. The conclusion was drawn that the synaptic structure, supposedly the limiting membrane of the nerve-ending particle, is one of the feasible sites of localization of the (Na(+)+K(+))-stimulated adenosine-triphosphatase activity in cerebral tissues. Adenosine triphosphatase in purified cerebral mitochondria was not stimulated by Na(+). 3. No qualitative differences were found between the (Na(+)+K(+))-stimulated adenosine-triphosphatase activities exhibited by the nerve-ending particles and by the cerebral small-granule fraction with respect to pH-dependence, cation requirements and susceptibility to ouabain.
摘要
  1. 本文描述了一种从大脑中分离神经末梢颗粒的快速方法。该方法包括将大颗粒部分在由溶解于0.32m蔗糖中的3%(w/v)和13%(w/v)菲可(聚蔗糖)组成的不连续密度梯度上进行离心。给出了神经末梢颗粒的生化及形态学鉴定结果。2. 最初存在于大脑灰质悬浮液中的(Na⁺+K⁺)刺激的三磷酸腺苷酶活性,约20%在主要由大神经末梢颗粒(直径约1μm)组成的部分中得以回收。在用乙二醇醚二胺四乙酸处理后,神经末梢部分中每毫克蛋白质的三磷酸腺苷酶活性与小颗粒部分中的相近。由此得出结论,推测为神经末梢颗粒限制膜的突触结构,是脑组织中(Na⁺+K⁺)刺激的三磷酸腺苷酶活性的可行定位位点之一。纯化的大脑线粒体中的三磷酸腺苷酶不受Na⁺刺激。3. 就pH依赖性、阳离子需求和对哇巴因的敏感性而言,神经末梢颗粒和大脑小颗粒部分所表现出的(Na⁺+K⁺)刺激的三磷酸腺苷酶活性之间未发现定性差异。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a25/1264767/f6586915e218/biochemj00760-0238-a.jpg

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