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嗜热古菌富铁嗜热栖热菌中一种嗜热P型Ag⁺/Cu⁺-ATP酶的特性分析。

Characterization of a thermophilic P-type Ag+/Cu+-ATPase from the extremophile Archaeoglobus fulgidus.

作者信息

Mandal Atin K, Cheung Win D, Argüello José M

机构信息

Department of Chemistry and Biochemistry, Worcester Polytechnic Institute, 100 Institute Road, Worcester, MA 01609, USA.

出版信息

J Biol Chem. 2002 Mar 1;277(9):7201-8. doi: 10.1074/jbc.M109964200. Epub 2001 Dec 26.

Abstract

The thermophilic, sulfur metabolizing Archaeoglobus fulgidus contains two genes, AF0473 and AF0152, encoding for PIB-type heavy metal transport ATPases. In this study, we describe the cloning, heterologous expression, purification, and functional characterization of one of these ATPases, CopA (NCB accession number AAB90763), encoded by AF0473. CopA is active at high temperatures (75 degrees C; E(a) = 103 kJ/mol) and inactive at 37 degrees C. It is activated by Ag+ (ATPase V(max) = 14.82 micromol/mg/h) and to a lesser extent by Cu+ (ATPase V(max) = 3.66 micromol/mg/h). However, Cu+ interacts with the enzyme with higher apparent affinity (ATPase stimulation, Ag+ K(12) = 29.4 microm; Cu+ K(12) = 2.1 microm). This activation by Ag+ or Cu+ is dependent on the presence of millimolar amounts of cysteine. In the presence of ATP, these metals drive the formation of an acid-stable phosphoenzyme with apparent affinities similar to those observed in the ATPase activity determinations (Ag+, K(12) = 23.0 microm; Cu+, K(12) = 3.9 microm). However, comparable levels of phosphoenzyme are reached in the presence of both cations (Ag+, 1.40 nmol/mg; Cu+, 1.08 nmol/mg). The stimulation of phosphorylation by the cations suggests that CopA drives the outward movement of the metal. CopA presents additional functional characteristics similar to other P-type ATPases. ATP interacts with the enzyme with two apparent affinities (ATPase K(m) = 0.25 mm; phosphorylation K(m) = 4.81 microm), and the presence of vanadate leads to enzyme inactivation (IC(50) = 24 microm). This is the first Ag+/Cu+ -ATPase expressed and purified in a functional form. Thus, it provides a model for structure-functional studies of these transporters. Moreover, its characterization will also contribute to an understanding of thermophilic ion transporters.

摘要

嗜热的、能进行硫代谢的古生球菌(Archaeoglobus fulgidus)含有两个基因,AF0473和AF0152,它们编码PIB型重金属转运ATP酶。在本研究中,我们描述了由AF0473编码的其中一种ATP酶CopA(NCB登录号AAB90763)的克隆、异源表达、纯化及功能特性。CopA在高温(75℃;活化能E(a)=103 kJ/mol)下具有活性,在37℃时无活性。它被Ag+激活(ATP酶最大反应速度V(max)=14.82 μmol/mg/h),被Cu+激活的程度较小(ATP酶最大反应速度V(max)=3.66 μmol/mg/h)。然而,Cu+与该酶相互作用的表观亲和力更高(ATP酶刺激,Ag+的K(12)=29.4 μM;Cu+的K(12)=2.1 μM)。这种由Ag+或Cu+引起的激活依赖于毫摩尔量半胱氨酸的存在。在ATP存在的情况下,这些金属驱动形成一种酸稳定的磷酸化酶,其表观亲和力与在ATP酶活性测定中观察到的相似(Ag+,K(12)=23.0 μM;Cu+,K(12)=3.9 μM)。然而,在两种阳离子存在的情况下达到了相当水平的磷酸化酶(Ag+,1.40 nmol/mg;Cu+,1.08 nmol/mg)。阳离子对磷酸化的刺激表明CopA驱动金属向外转运。CopA具有与其他P型ATP酶相似的其他功能特性。ATP与该酶以两种表观亲和力相互作用(ATP酶米氏常数K(m)=0.25 mM;磷酸化米氏常数K(m)=4.81 μM),钒酸盐的存在导致酶失活(半数抑制浓度IC(50)=24 μM)。这是第一个以功能形式表达和纯化的Ag+/Cu+-ATP酶。因此,它为这些转运蛋白的结构-功能研究提供了一个模型。此外,对其特性的研究也将有助于理解嗜热离子转运蛋白。

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