Dode Leonard, Andersen Jens Peter, Vanoevelen Jo, Raeymaekers Luc, Missiaen Ludwig, Vilsen Bente, Wuytack Frank
Laboratory of Physiology, Catholic University of Leuven, Campus Gasthuisberg O/N, Herestraat 49, Bus 802, B-3000 Leuven, Belgium.
J Biol Chem. 2006 Feb 10;281(6):3182-9. doi: 10.1074/jbc.M511547200. Epub 2005 Dec 6.
Human secretory pathway Ca2+/Mn2+-ATPase (SPCA) 2 encoded by ATP2C2 is only expressed in a limited number of tissues, unlike the ubiquitously expressed SPCA1 pump (encoded by ATP2C1, the gene defective in Hailey-Hailey disease). It has not been determined whether there are significant functional differences between SPCA1 and SPCA2 pump enzymes. Therefore, steady-state and transient kinetic approaches were used to characterize the overall and partial reactions of the Ca2+ transport cycle mediated by the human SPCA2 enzyme upon heterologous expression in HEK-293 cells. The catalytic turnover rate of SPCA2 was found enhanced relative to SPCA1 pumps. SPCA2 displayed a very high apparent affinity for cytosolic Ca2+ (K0.5 = 0.025 microm) in activation of the phosphorylation activity but still 2.5-fold lower than that of SPCA1d. Our kinetic analysis traced both differences to the increased rate characterizing the E1 approximately PCa to E2-P transition of SPCA2. Moreover, the reduced rate of the E2 to E1 transition seems to contribute in determining the lower apparent Ca2+ affinity and the increased sensitivity to thapsigargin inhibition, relative to SPCA1d. SPCA2 also displayed a reduced apparent affinity for inorganic phosphate, which could be explained by the observed enhanced rate of the E2-P dephosphorylation. The insensitivity to modulation by pH and K+ concentration of the constitutively enhanced E2-P dephosphorylation of SPCA2 is similar to SPCA1d and possibly represents a novel SPCA-specific feature, which is not shared by sarco(endo)plasmic reticulum Ca2+-ATPases.
由ATP2C2编码的人类分泌途径Ca2+/Mn2+-ATP酶(SPCA)2仅在有限数量的组织中表达,这与普遍表达的SPCA1泵(由ATP2C1编码,该基因在黑利-黑利病中存在缺陷)不同。尚未确定SPCA1和SPCA2泵酶之间是否存在显著的功能差异。因此,采用稳态和瞬态动力学方法来表征人类SPCA2酶在HEK-293细胞中异源表达时介导的Ca2+转运循环的整体和部分反应。发现SPCA2的催化周转率相对于SPCA1泵有所提高。在激活磷酸化活性方面,SPCA2对胞质Ca2+表现出非常高的表观亲和力(K0.5 = 0.025微摩尔),但仍比SPCA1d低2.5倍。我们的动力学分析将这两种差异都归因于SPCA2从E1~PCa到E2-P转变速率的增加。此外,相对于SPCA1d,E2到E1转变速率的降低似乎有助于确定较低的表观Ca2+亲和力以及对毒胡萝卜素抑制的敏感性增加。SPCA2对无机磷酸的表观亲和力也降低了,这可以通过观察到的E2-P去磷酸化速率增强来解释。SPCA2组成性增强的E2-P去磷酸化对pH和K+浓度调节的不敏感性与SPCA1d相似,可能代表了一种新的SPCA特异性特征,而肌质(内质)网Ca2+-ATP酶不具有这种特征。