Punzengruber C, Prager R, Kolassa N, Winkler F, Suko J
Eur J Biochem. 1978 Dec;92(2):349-59. doi: 10.1111/j.1432-1033.1978.tb12754.x.
Phosphorylation of the calcium-transport ATPase of skeletal muscle sarcoplasmic reticulum by inorganic phosphate was investigated in the presence or absence of a calcium gradient. The maximum phosphoprotein formation in the presence of a calcium gradient at 20 degrees C and pH 7.0 is approximately 4 nmol/mg sarcoplasmic reticulum protein, but only between 2.4 and 2.8 nmol/mg protein in the absence of a calcium gradient, using Ionophore X-537 A or phospholipase-A-treated sarcoplasmic reticulum vesicles. Maximum phosphoprotein formation independent of calcium gradient at 20 degrees C and pH 6.2 is in the range of 3.6--4 nmol/mg protein. Half-maximum phosphoprotein formation dependent on calcium gradient was achieved with 0.1--0.2 mM free orthophosphate at 10 mM free magnesium or at 0.1--0.2 mM free magnesium at 10 mM free orthophosphate. Phosphoprotein formation independent of calcium gradient is in accordance with a model which assumes, firstly, the formation of a ternary complex of the ATPase protein with orthophosphate and magnesium (E . Pi . Mg) in equilibrium with the phosphoprotein (E-Pi . Mg) and, secondly, an interdependence of both ions in the formation of the ternary complex. The apparent equilibrium constant was 0.6 and the apparent dissociation constants KMg, KMg', KPi and KPi' were 8.8, 1.9, 7.2 and 1.5 mM respectively, assuming a total concentration of the phosphorylation site per enzyme of 7 nmol/mg protein.
在有或无钙梯度存在的情况下,研究了无机磷酸盐对骨骼肌肌浆网钙转运ATP酶的磷酸化作用。在20℃和pH 7.0、存在钙梯度的条件下,最大磷蛋白形成量约为4 nmol/mg肌浆网蛋白,但在无钙梯度时,使用离子载体X-537 A或经磷脂酶A处理的肌浆网囊泡,最大磷蛋白形成量仅为2.4至2.8 nmol/mg蛋白。在20℃和pH 6.2时,与钙梯度无关的最大磷蛋白形成量在3.6 - 4 nmol/mg蛋白范围内。在10 mM游离镁存在下,0.1 - 0.2 mM游离正磷酸盐可使依赖钙梯度的磷蛋白形成达到半最大值;或在10 mM游离正磷酸盐存在下,0.1 - 0.2 mM游离镁也可达到此效果。与钙梯度无关的磷蛋白形成符合一种模型,该模型首先假定ATP酶蛋白与正磷酸盐和镁形成三元复合物(E·Pi·Mg),并与磷蛋白(E-Pi·Mg)处于平衡状态,其次假定在三元复合物形成过程中两种离子相互依赖。假设每个酶的磷酸化位点总浓度为7 nmol/mg蛋白,则表观平衡常数为0.6,表观解离常数KMg、KMg'、KPi和KPi'分别为8.8、1.9、7.2和1.5 mM。