Instituto de Química y Fisicoquímica Biologicas, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas, Junín 956, 1113 Buenos Aires, Argentina.
J Biol Chem. 2011 Sep 16;286(37):32018-25. doi: 10.1074/jbc.M111.266650. Epub 2011 Jul 27.
In this work, we set out to identify and characterize the calcium occluded intermediate(s) of the plasma membrane Ca(2+)-ATPase (PMCA) to study the mechanism of calcium transport. To this end, we developed a procedure for measuring the occlusion of Ca(2+) in microsomes containing PMCA. This involves a system for overexpression of the PMCA and the use of a rapid mixing device combined with a filtration chamber, allowing the isolation of the enzyme and quantification of retained calcium. Measurements of retained calcium as a function of the Ca(2+) concentration in steady state showed a hyperbolic dependence with an apparent dissociation constant of 12 ± 2.2 μM, which agrees with the value found through measurements of PMCA activity in the absence of calmodulin. When enzyme phosphorylation and the retained calcium were studied as a function of time in the presence of La(III) (inducing accumulation of phosphoenzyme in the E(1)P state), we obtained apparent rate constants not significantly different from each other. Quantification of EP and retained calcium in steady state yield a stoichiometry of one mole of occluded calcium per mole of phosphoenzyme. These results demonstrate for the first time that one calcium ion becomes occluded in the E(1)P-phosphorylated intermediate of the PMCA.
在这项工作中,我们着手鉴定和描述质膜 Ca(2+)-ATP 酶 (PMCA) 的钙封闭中间产物,以研究钙转运的机制。为此,我们开发了一种测量包含 PMCA 的微粒体中钙封闭的程序。这涉及 PMCA 的过表达系统和快速混合装置与过滤室的结合,允许酶的分离和保留钙的定量。稳态下保留钙与 Ca(2+)浓度的关系的测量表明存在双曲线依赖性,表观解离常数为 12 ± 2.2 μM,与无钙调蛋白时 PMCA 活性测量得到的值一致。当在 La(III)存在下(诱导 E(1)P 状态下磷酸酶的积累)研究酶磷酸化和保留钙与时间的关系时,我们获得的表观速率常数彼此之间没有显著差异。稳态下 EP 和保留钙的定量产生每摩尔磷酸化酶结合一摩尔封闭钙的计量关系。这些结果首次表明,一个钙离子在 PMCA 的 E(1)P-磷酸化中间产物中被封闭。