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镁 - 三磷酸腺苷酶活性的分子机制。

Molecular mechanism of Mg-ATPase activity.

作者信息

Nozadze Eka, Arutinova Nana, Tsakadze Leila, Shioshvili Lia, Leladze Marina, Dzneladze Sopio, Chkadua Gvantsa

机构信息

Departament of Membranology, Iv. Beritashvili Center of Experimental Biomedicine, 14 Gotua Street, 0160, Tbilisi, Georgia,

出版信息

J Membr Biol. 2015 Apr;248(2):295-300. doi: 10.1007/s00232-014-9769-2. Epub 2015 Jan 8.

Abstract

Mg-ATPase is very important in living organisms. To better understand the molecular mechanism of Mg-ATPase activity, we applied the method of kinetic analysis of multi-sited enzyme systems; this is a suitable approach used for kinetic investigation of multi-sited enzyme systems. The study of Mg-ATPase has demonstrated: (1) It is a multi-sited enzyme system whose functional unit is minimum a dimmer; (2) Its substrate is MgATP, while free ATP and Mg(2+) appear to be the enzyme modifiers with a dual effect; (3) The enzyme system for MgATP has at least three sites: i.e., the essential activator, full inhibitor, and partial effect modifiers sites; (4) Mg-ATPase carries out Mg(2+) transport through the 1Mg(2+):1ATP stochiometry. Based on the results of these analyses, the kinetic scheme for Mg-ATPase has been developed.

摘要

镁 - ATP酶在生物体中非常重要。为了更好地理解镁 - ATP酶活性的分子机制,我们应用了多位点酶系统的动力学分析方法;这是一种适用于多位点酶系统动力学研究的方法。对镁 - ATP酶的研究表明:(1)它是一个多位点酶系统,其功能单元至少是二聚体;(2)其底物是MgATP,而游离ATP和Mg(2+)似乎是具有双重作用的酶修饰剂;(3)MgATP的酶系统至少有三个位点,即必需激活剂位点、完全抑制剂位点和部分效应修饰剂位点;(4)镁 - ATP酶通过1Mg(2+):1ATP的化学计量比进行Mg(2+)运输。基于这些分析结果,已建立了镁 - ATP酶的动力学模型。

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