Palmgren M G, Christensen G
Department of Plant Biology, Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
J Biol Chem. 1994 Jan 28;269(4):3027-33.
To examine the functional properties of the three major isoforms of plasma membrane H(+)-ATPase expressed in Arabidopsis thaliana (AHA1, AHA2, and AHA3), we employed a system for the heterologous expression of functional plant plasma membrane H(+)-ATPase in yeast (Villalba, J. M., Palmgren, M. G., Berberian, G. E., Ferguson, C., and Serrano, R. (1992) J. Biol. Chem. 267, 12341-12349). Each isoform was expressed efficiently but appeared to be retained in the endoplasmic reticulum of yeast. All isoforms displayed qualitatively similar enzymatic properties, but quantitative differences were found. When compared with AHA3, AHA1 and AHA2 had an apparent higher turnover rate for ATP hydrolysis, exhibited a 10-fold higher apparent affinity for ATP, and a 3-fold higher sensitivity toward vanadate. In addition, AHA2 had a slightly lower apparent affinity for H+ and seemed to be more susceptible to activation by lysophosphatidylcholine than did AHA1 and AHA3. This study represents the first comparison of the functional properties of isoforms of the plant plasma membrane H(+)-ATPase.
为了研究拟南芥中表达的质膜H⁺-ATPase的三种主要同工型(AHA1、AHA2和AHA3)的功能特性,我们采用了一种在酵母中异源表达功能性植物质膜H⁺-ATPase的系统(Villalba, J. M., Palmgren, M. G., Berberian, G. E., Ferguson, C., and Serrano, R. (1992) J. Biol. Chem. 267, 12341 - 12349)。每种同工型均高效表达,但似乎保留在酵母的内质网中。所有同工型均表现出定性相似的酶学特性,但存在定量差异。与AHA3相比,AHA1和AHA2的ATP水解表观周转率明显更高,对ATP的表观亲和力高10倍,对钒酸盐的敏感性高3倍。此外,AHA2对H⁺的表观亲和力略低,并且似乎比AHA1和AHA3更容易受到溶血磷脂酰胆碱的激活。这项研究首次比较了植物质膜H⁺-ATPase同工型的功能特性。