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The mechanism of the reaction catalysed by adenosine triphosphate-creatine phosphotransferase

机译:三磷酸腺苷-肌酸磷酸转移酶催化反应的机理

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p1. The forward and reverse reactions catalysed by ATP-creatine phosphotransferase have been studied kinetically at pH8.0 in the presence and absence of products, under conditions in which the free Mg(2+) concentration was maintained constant at 1mm. Thus at fixed pH the reaction may be considered as being bireactant and expressed as:MgATP(2-)+creatine(0)right harpoon over left harpoonMgADP(-)+phosphocreatine(2-)2. The initial-velocity pattern in the absence of products and the product-inhibition pattern have been determined. These are consistent with a random mechanism in which all steps are in rapid equilibrium except that concerned with the interconversion of the central ternary complexes, and in which two dead-end complexes (enzyme-MgADP-creatine and enzyme-MgATP-phosphocreatine) are formed. The results are in accord with previous suggestions that the enzyme possesses distinct sites for the combination of the nucleotide and guanidino substrates. 3. Values have been determined for the Michaelis and dissociation constants involved in the combination of each substrate with various enzyme forms. Although these values cannot be regarded as absolute, they appear to indicate that the presence of one substrate on the enzyme enhances the combination of the second substrate. In addition, it would seem that in the formation of the enzyme-MgADP-creatine complex the concentration of one reactant does not affect the combination of the other. This contrasts with the formation of the enzyme-MgATP-phosphocreatine complex, where each reactant hinders the combination of the other./p
机译:> 1。在存在和不存在产物的条件下,在其中游离Mg(2+)浓度保持恒定在1mm的条件下,已在pH8.0动力学研究了由ATP-肌酸磷酸转移酶催化的正向和反向反应。因此,在固定的pH值下,该反应可被视为是双反应物,并表示为:MgATP(2-)+肌酸(0)右鱼叉超过左鱼叉MgADP(-)+磷酸肌酸(2-)2。已经确定了不存在产物时的初始速度模式和产物抑制模式。这些与随机机制一致,在随机机制中,除涉及中央三元复合物的相互转化外,所有步骤均处于快速平衡状态,并且其中形成了两个死端复合物(酶-MgADP-肌酸和酶-MgATP-磷酸肌酸)。 。该结果与先前的建议一致,即该酶具有用于核苷酸和胍基底物组合的不同位点。 3.已经确定了每种底物与各种酶形式的组合中所涉及的米氏常数和解离常数的值。尽管这些值不能被认为是绝对的,但它们似乎表明酶上一种底物的存在增强了第二种底物的结合。另外,似乎在酶-MgADP-肌酸复合物的形成中,一种反应物的浓度不影响另一种反应物的组合。这与酶-MgATP-磷酸肌酸复合物的形成形成对比,其中每种反应物阻碍了另一种反应物的结合。

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