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肌肉丙酮酸激酶的动力学及作用机制

Kinetics and mechanism of action of muscle pyruvate kinase.

作者信息

Dann L G, Britton H G

出版信息

Biochem J. 1978 Jan 1;169(1):39-54. doi: 10.1042/bj1690039.

Abstract
  1. The mechanism of rabbit muscle pyruvate kinase was investigated by measurements of fluxes, isotope trapping, steady-state velocity and binding of the substrates. All measurements were made at pH8.5 in Tris/HCl buffer and at 5mm-free Mg(2+). 2. Methods of preparing [(32)P]phosphoenolpyruvate from [(32)P]P(i) in high yield and determining [(32)P]-phosphoenolpyruvate and [8-(14)C]ADP are described. 3. The ratio Flux of ATP to ADP/Flux of ATP to phosphoenolpyruvate (measured at equilibrium) increased hyperbolically with ADP concentration from unity to about 2.1 at 2mm-ADP, but was unaffected by phosphoenolpyruvate concentration. Since the ratio is greater than unity, one pathway for the addition of substrates must involve phosphoenolpyruvate adding first to the enzyme in a rate-limiting step. However, the substrates must also add in the alternative order, because of the non-linear increase in the ratio with ADP concentration and because the rate of increase is very much less than that predicted from the steady-state velocity data for an ordered addition. The lack of influence of phosphoenolpyruvate on the ratio is consistent with the rapid addition of ADP in the alternative pathway. At low ADP concentrations the alternative pathway contributes less than 33% to the total reaction. 4. Isotope trapping was observed with [(32)P]phosphoenolpyruvate, confirming that when phosphoenolpyruvate adds first to the enzyme it is in a rate-limiting step. The release of phosphoenolpyruvate from the ternary complex must also be a slow step. Trapping was not observed with [8-(14)C]ADP, hence the addition of ADP to the free enzyme must be rapid unless its dissociation constant is very large (>20mm). 5. Binding studies showed that 4mol of [(32)P]phosphoenolpyruvate binds to 1mol of the enzyme, probably unligated to Mg(2+), with a dissociation constant appropriate to the mechanism indicated above. Binding of [8-(14)C]ADP could not be detected, and hence the binding of ADP occurs by a low-affinity step. The latter is also demanded by the steady-state velocity data. 6. The ratio Flux of phosphoenolpyruvate to ATP/Flux of phosphoenolpyruvate to pyruvate (determined from the incorporation of label into phosphoenolpyruvate from [3-(14)C]-pyruvate or [gamma-(32)P]ATP during the forward reaction) did not differ significantly from unity. Steady-state velocity data predicted grossly different flux ratios for ordered dissociations of the products, and the results indicate that the dissociation must be rapid and random. The data also exclude a Ping-Pong mechanism. 7. Permissible rate constants for the above mechanism are calculated. The results indicate a high degree of cooperativity in binding, whatever the order of addition of substrate.
摘要
  1. 通过测量通量、同位素捕获、稳态速度和底物结合来研究兔肌肉丙酮酸激酶的机制。所有测量均在pH8.5的Tris/HCl缓冲液中、5mM游离Mg(2+)条件下进行。2. 描述了从[(32)P]P(i)高产率制备[(32)P]磷酸烯醇丙酮酸以及测定[(32)P] - 磷酸烯醇丙酮酸和[8-(14)C]ADP的方法。3. ATP到ADP的通量与ATP到磷酸烯醇丙酮酸的通量之比(在平衡时测量)随着ADP浓度从1呈双曲线增加,在2mM ADP时达到约2.1,但不受磷酸烯醇丙酮酸浓度影响。由于该比值大于1,底物添加的一条途径必定涉及磷酸烯醇丙酮酸在限速步骤中首先添加到酶上。然而,底物也必定以另一种顺序添加,因为该比值随ADP浓度呈非线性增加,且增加速率远小于有序添加的稳态速度数据所预测的速率。磷酸烯醇丙酮酸对该比值缺乏影响与另一条途径中ADP的快速添加一致。在低ADP浓度下,另一条途径对总反应的贡献小于33%。4. 用[(32)P]磷酸烯醇丙酮酸观察到同位素捕获,证实当磷酸烯醇丙酮酸首先添加到酶上时它处于限速步骤。磷酸烯醇丙酮酸从三元复合物中的释放也必定是一个缓慢步骤。用[8-(14)C]ADP未观察到捕获,因此ADP添加到游离酶上必定很快,除非其解离常数非常大(>20mM)。5. 结合研究表明,4摩尔[(32)P]磷酸烯醇丙酮酸与1摩尔酶结合,可能未与Mg(2+)结合,其解离常数与上述机制相符。未检测到[8-(14)C]ADP的结合,因此ADP的结合通过低亲和力步骤发生。稳态速度数据也需要这一点。6. 磷酸烯醇丙酮酸到ATP的通量与磷酸烯醇丙酮酸到丙酮酸的通量之比(由正向反应中[3-(14)C] - 丙酮酸或[γ-(32)P]ATP的标记掺入磷酸烯醇丙酮酸中确定)与1没有显著差异。稳态速度数据预测产物有序解离的通量比差异很大,结果表明解离必定快速且随机。数据也排除了乒乓机制。7. 计算了上述机制的允许速率常数。结果表明无论底物添加顺序如何,结合中都存在高度协同性。

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