de Meis L
J Biol Chem. 1976 Apr 10;251(7):2055-62.
The role of the Ca2+ concentration gradient in ATP synthesis and membrane phosphorylation by Pi was investigated in sarcoplasmic reticulum vesicles isolated from rabbit skeletal muscle. The Pi concentration required to attain 50% of the maximal membrane phosphorylation varies significantly in the pH range of 5.5 to 4.5, the optimal being at pH 6.0. In the pH range of 6.0 to 7.0, this concentration of Pi was 4- to 10-fold higher in empty vesicles than in vesicles loaded with calcium phosphate, i.e. having transmembrane Ca2+ concentration gradient. ATP, ADP, and Ca2+ inhibit the membrane phosphorylation by Pi, the inhibition being greater at pH 7.0 than at pH 6.0. The pH profile for ATP synthesis shows a higher optimum than for membrane phosphorylation. The optimum pH for synthesis, but not for phosphorylation depends on whether the vesicles were previously loaded with calcium phosphate or with calcium oxalate. Addition of Ca2+ to the assay medium inhibits the extent of membrane phosphorylation and the rate of ATP synthesis to different extents. Evidence is presented that the rate of membrane phosphorylation by Pi is higher than the rate by which the phosphoprotein transfers its pohsphate to ADP for the ATP synthesis.
在从兔骨骼肌分离得到的肌浆网囊泡中,研究了Ca2+浓度梯度在ATP合成以及Pi介导的膜磷酸化过程中的作用。在5.5至4.5的pH范围内,达到最大膜磷酸化50%所需的Pi浓度变化显著,最适pH为6.0。在6.0至7.0的pH范围内,空囊泡中该Pi浓度比装载有磷酸钙(即具有跨膜Ca2+浓度梯度)的囊泡高4至10倍。ATP、ADP和Ca2+抑制Pi介导的膜磷酸化,在pH 7.0时的抑制作用比pH 6.0时更强。ATP合成的pH曲线显示其最适pH高于膜磷酸化的最适pH。合成的最适pH(而非磷酸化的最适pH)取决于囊泡之前是装载了磷酸钙还是草酸钙。向测定介质中添加Ca2+会不同程度地抑制膜磷酸化程度和ATP合成速率。有证据表明,Pi介导的膜磷酸化速率高于磷蛋白将其磷酸基团转移给ADP以合成ATP的速率。