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PH-dependence of the steady-state rate of a two-step enzymic reaction

机译:pH-依赖于两步酶反应的稳态率

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p1. The pH-dependence is considered of a reaction between E and S that proceeds through an intermediate ES under “Briggs-Haldane” conditions, i.e. there is a steady state in ES and [S]o greater than [E]T, where [S]o is the initial concentration of S and [E]T is the total concentration of all forms of E. Reactants and intermediates are assumed to interconvert in three protonic states (E equilibrium ES; EH equilibrium EHS; EH2 equilibrium EH2S), but only EHS provides products by an irreversible reaction whose rate constant is kcat. Protonations are assumed to be so fast that they are all at equilibrium. 2. The rate equation for this model is shown to be v = d[P]/dt = (kcat.[E]T[S]o/A)/[(KmBC/DA) + [S]o], where Km is the usual assembly of rate constants around EHS and A-D are functions of the form (1 + [H]/K1 + K2/[H]), in which K1 and K2 are: in A, the molecular ionization constants of ES; in B, the analogous constants of E; in C and D, apparent ionization constants composed of molecular ionization constants (of E or ES) and assemblies of rate constants. 3. As in earlier treatments of this type of reaction which involve either the assumption that the reactants and intermediate are in equilibrium or the assumption of Peller & Alberty [(1959) J. Am. Chem. Soc. 81, 5907-5914] that only EH and EHS interconvert directly, the pH-dependence of kcat. is determined only by A. 4. The pH-dependence of Km is determined in general by B-C/A-D, but when reactants and intermediate are in equilibrium, C identical to D and this expression simplifies to B/A. 5. The pH-dependence of kcat./Km, i.e. of the rate when [S]o less than Km, is not necessarily a simple bell-shaped curve characterized only by the ionization constants of B, but is a complex curve characterized by D/B-C. 6. Various situations are discussed in which the pH-dependence of kcat./Km is determined by assemblies simpler than D/B-C. The special situation in which a kcat./Km-pH profile provides the molecular pKa values of the intermediate ES complex is delineated./p
机译:> 1。 pH依赖性被认为是通过中间体在“Briggs-Haldane”条件下进行的E和S之间的反应,即ES和[S] O大于[E] T,其中[S ] o是S和[E] T的初始浓度是所有形式的E.反应物和中间体的总浓度被假定在三个质子状态(E平衡EHS; EH2平衡EH2S)中互连。只有EHS通过不可逆转的反应提供产品,其速率常数为kcat。假定质子是如此迅速,它们都处于均衡状态。 2.该模型的速率方程显示为V = D [P] / dt =(kcat。[e] t [s] O / a)/ [(kmbc / da)+ [s] o],在哪里KM是EHS周围的速率常数的通常组装,AD是形式的功能(1 + [H] / K1 + K2 / [H]),其中K1和K2是:IS,ES的分子电离常数。在B,e的类似常数;在C和D中,表观电离常数由分子电离常数(E或ES)和速率常数的组件组成。 3.如这种反应的早期治疗中,涉及反应物和中间体处于平衡或髓质瓶的假设的假设。 alberty [(1959)J.AM。化学。 SOC。 81,5907-5914]只有EH和EHS直接相互转换,kcat的pH依赖性。仅由A确定。4. KM的pH依赖性一般通过B-C / A-D确定,但是当反应物和中间体处于平衡时,C与D相同,并且该表达简化为B / A. kcat./km的pH依赖性,即速率小于km的速率,不一定是仅由b的电离常数表征的简单的钟形曲线,而是一种复杂的曲线,其特征在于d / bc。 6.讨论了各种情况,其中kcat./km的pH依赖性由组件比d / b-c更简单地确定。 kcat./km-ph型谱提供中间ES复合物的分子pKa值的特殊情况被描绘。

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