Nozadze Eka, Arutinova Nana, Tsakadze Leila, Shioshvili Lia, Leladze Marina, Dzneladze Sopio, Chkadua Gvantsa
Departament of Membranology, Iv. Beritashvili Center of Experimental Biomedicine, 14 Gotua Street, 0160, Tbilisi, Georgia,
J Membr Biol. 2015 Apr;248(2):295-300. doi: 10.1007/s00232-014-9769-2. Epub 2015 Jan 8.
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.
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。