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兔肾外髓质Na,K-ATP酶的动力学特性:(αβ)₂二聚体的性质

Kinetic characterization of Na,K-ATPase from rabbit outer renal medulla: properties of the (alpha beta)(2) dimer.

作者信息

de Lima Santos Hérica, Ciancaglini Pietro

机构信息

Departamento de Química, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto-FFCLRP, Universidade de São Paulo-USP, Av. Bandeirantes 3900, SP, 14040-901, Ribeirão Preto, Brazil.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2003 Jul;135(3):539-49. doi: 10.1016/s1096-4959(03)00139-8.

Abstract

We describe and compare the main kinetic characteristics of the (alpha beta)(2) form of rabbit kidney Na,K-ATPase. The dependence of ATPase activity on ATP concentration revealed high (K(0.5)=4 microM) and low (K(0.5)=1.4 mM) affinity sites for ATP, exhibiting negative cooperativity and a specific activity of approximately 700 U/mg. For p-nitrophenylphosphate (PNPP) as substrate, a single saturation curve was found, with a smaller apparent affinity of the enzyme for this substrate (K(0.5)=0.5 mM) and a lower hydrolysis rate (V(M)=42 U/mg). Stimulation of ATPase activity by K(+) (K(0.5)=0.63 mM), Na(+) (K(0.5)=11 mM) and Mg(2+) (K(0.5)=0.60 mM) all showed V(M)'s of approximately 600 U/mg and negative cooperativity. K(+) (K(0.5)=0.69 mM) and Mg(2+) (K(0.5)=0.57 mM) also stimulated PNPPase activity of the (alpha beta)(2) form. Ouabain (K(0.5)=0.01 microM and K(0.5)=0.1 mM) and orthovanadate (K(0.5)=0.06 microM) completely inhibited the ATPase activity of the (alpha beta)(2) form. The kinetic characteristics obtained constitute reference values for diprotomeric (alpha beta)(2)-units of Na,K-ATPase, thus contributing to a better understanding of the biochemical mechanisms of the enzyme.

摘要

我们描述并比较了兔肾Na,K-ATP酶(αβ)₂形式的主要动力学特征。ATP酶活性对ATP浓度的依赖性揭示了ATP的高亲和力位点(K₀.₅ = 4 μM)和低亲和力位点(K₀.₅ = 1.4 mM),表现出负协同性,比活性约为700 U/mg。以对硝基苯磷酸酯(PNPP)为底物时,发现了一条单一的饱和曲线,该酶对该底物的表观亲和力较小(K₀.₅ = 0.5 mM),水解速率较低(Vₘ = 42 U/mg)。K⁺(K₀.₅ = 0.63 mM)、Na⁺(K₀.₅ = 11 mM)和Mg²⁺(K₀.₅ = 0.60 mM)对ATP酶活性的刺激均显示Vₘ约为600 U/mg,并具有负协同性。K⁺(K₀.₅ = 0.69 mM)和Mg²⁺(K₀.₅ = 0.57 mM)也刺激了(αβ)₂形式的PNPP酶活性。哇巴因(K₀.₅ = 0.01 μM和K₀.₅ = 0.1 mM)和原钒酸盐(K₀.₅ = 0.06 μM)完全抑制了(αβ)₂形式的ATP酶活性。所获得的动力学特征构成了Na,K-ATP酶二聚体(αβ)₂单位的参考值,从而有助于更好地理解该酶的生化机制。

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