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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >pH and ligand binding modulate the strength of protein-protein interactions in the Ca(2+)-ATPase from sarcoplasmic reticulum membranes.
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pH and ligand binding modulate the strength of protein-protein interactions in the Ca(2+)-ATPase from sarcoplasmic reticulum membranes.

机译:pH和配体结合调节肌浆网膜Ca(2 +)-ATPase中的蛋白质-蛋白质相互作用的强度。

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The Ca(2+)-ATPase from sarcoplasmic reticulum (SR) membranes couples the Ca(2+) transport to ATP hydrolysis through phosphorylation in its cytoplasmic catalytic domain. Interactions between protein domains and the role of monomer-monomer interactions remain unclear. Here, we report a differential scanning calorimetric study of the thermal unfolding of this protein. In the pH range 6-8, thermal unfolding of the Ca(2+)-ATPase in glycogen phosphorylase-free SR membranes shows a major endothermic peak with a critical temperature midpoint ranging between 51 and 55 degrees C, depending on pH, Ca(2+), Mg(2+)-ADP and KCl concentrations. The enthalpy change of the overall unfolding process ranged between 250 and 300 kcal/mol of Ca(2+)-ATPase monomer. Thermal denaturation of the Ca(2+)-ATPase in SR membranes is well fitted to an irreversible process that can be rationalized in terms of a non-two state process, N (native)right harpoon over left harpoon I (intermediate)-->D (denatured). Thermodynamic analysis show that this protein has a compact structure, implying a tight structural interconnection between catalytic and Ca(2+) transport domains. The apparent cooperative unit, defined by the van 't Hoff enthalpy to the overall unfolding enthalpy ratio, increased from 1.1 at pH 6 to 1.8 at pH 8, showing that monomer-monomer interactions are stronger at weakly basic pH than at weakly acidic pH. While micromolar Ca(2+) concentrations had only a weak effect on the cooperativity of the unfolding process, this is clearly increased by millimolar Mg(2+)-ADP. In addition, high ionic strength lowered the apparent cooperative unit to approximately 1.0 in the pH range 6-8. Taken together, these results suggest that protein-protein interactions are altered by variables that modulate the catalytic activity of this enzyme.
机译:从肌质网(SR)膜的Ca(2 +)-ATPase通过其胞质催化域中的磷酸化将Ca(2+)传输耦合到ATP水解。蛋白质域之间的相互作用和单体-单体相互作用的作用仍不清楚。在这里,我们报告该蛋白质的热展开的差示扫描量热研究。在6-8的pH范围内,Ca(2 +)-ATPase在无糖原磷酸化酶的SR膜中的热解折叠显示出一个主要的吸热峰,其临界温度中点介于51至55摄氏度之间,具体取决于pH值Ca( 2 +),Mg(2 +)-ADP和KCl浓度。整个展开过程的焓变范围介于250和300 kcal / mol的Ca(2 +)-ATPase单体之间。 SR膜中Ca(2 +)-ATPase的热变性非常适合不可逆的过程,该过程可根据非两态过程(左鱼叉I(中级)N(天然)右鱼叉I(中级))合理化- > D(变性)。热力学分析表明该蛋白具有紧凑的结构,这意味着催化和Ca(2+)传输域之间紧密的结构互连。由van't Hoff焓与总展开焓之比定义的表观协作单位,从pH 6的1.1增加到pH 8的1.8,表明弱碱性pH下的单体-单体相互作用强于弱酸性pH。虽然微摩尔Ca(2+)浓度对展开过程的协同作用仅具有较弱的影响,但毫摩尔Mg(2 +)-ADP明显增加了浓度。此外,在6-8的pH范围内,高离子强度将表观协同单元降低至约1.0。综上所述,这些结果表明蛋白质-蛋白质相互作用被调节该酶催化活性的变量所改变。

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