Temperature dependence of brain ATPases in immature and adult rats.

R Tirri, K Bowler
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Abstract

In immature rats the temperature dependence of Na+-K+ ATPase of a crude homogenate of brain shows a compex curve with two activity maxima. When EDTA was present in the homogenization medium the curve obtained was of simpler, curvilinear type showing an increased activity at temperatures above 20 degrees C. The Na+-K+ ATPase activity in similar preparation from adult brain were not complex but curvilinear whether EDTA was used or not; however, EDTA increased the activity at temperatures above 20 degrees C. When such chelating agents as EDTA or histidine were used in preparation of microsomes from immature rat brain, the temperature dependence curve of Na+-K+ ATPase in this membrane fraction was changed to a steeper and simpler curve with increased activity especially at temperatures above 20 degrees. These agents, however, did not eliminate totally the complex shape of curve found in microsomes prepared without the presence of any chelating agents. When microsomes were prepared by using NaI-technique the temperature dependence of this enzyme was linear between temperatures 15-14 degrees, the activity being 4-5-fold higher than in the ordinary microsomal preparation. A stimulation of the Mg2+ ATPase by Na+ ions (100mM) was found at temperatures below 30 degrees but an inhibition by the same concentration of Na+ at upper temperatures. This effect together with the lowered activity due to bivalent metal ions (e.g. Ca2+, Cu2+) in 'crude' preparations was thought to be reasons for the complex shape of temperature dependence curve of Na+-K+ ATPase activity.

未成熟和成年大鼠脑atp酶的温度依赖性。
未成熟大鼠脑粗匀浆中Na+-K+ atp酶的温度依赖性表现为具有两个活性最大值的复合曲线。当EDTA存在于匀浆介质时,得到的曲线较简单,曲线型表明在温度高于20℃时,Na+-K+ atp酶的活性增加,而成人脑的类似制剂的Na+-K+ atp酶活性不复杂,无论是否使用EDTA,都呈曲线型;当使用EDTA或组氨酸等螯合剂制备未成熟大鼠脑微体时,该膜组分中Na+-K+ atp酶的温度依赖曲线变得更陡峭、更简单,特别是在温度高于20℃时,其活性增加。然而,这些药物并不能完全消除在没有任何螯合剂的情况下制备的微粒体中发现的复杂曲线形状。当用nai技术制备微粒体时,该酶的温度依赖性在15-14度之间呈线性,活性比普通微粒体高4-5倍。在低于30度的温度下,100mM的Na+离子对Mg2+ atp酶有刺激作用,但在较高温度下,相同浓度的Na+离子对Mg2+ atp酶有抑制作用。这种影响加上“粗”制剂中二价金属离子(如Ca2+, Cu2+)的活性降低,被认为是Na+-K+ atp酶活性的温度依赖曲线形状复杂的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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