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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Kinetics and equilibrium binding of phosphoenolpyruvate to phosphoenolpyruvate carboxylase from Zea mays
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Kinetics and equilibrium binding of phosphoenolpyruvate to phosphoenolpyruvate carboxylase from Zea mays

机译:玉米淀粉中磷酸烯醇丙酮酸酯与磷酸烯醇丙酮酸酯羧化酶的动力学和平衡结合

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摘要

Phosphoenolpyruvate carboxylase (PEPC) the carbon dioxide processing enzyme of C_4 plants shows different affinities for the substrate phosphoenolpyruvate (PEP) at pH 7.0 and pH 8.0. This has been demonstrated by determination of the enzymatic activity, applying fluorescence titrations and fast reaction techniques such as iodine laser temperature jump (ILTJ) and stopped flow (SF). The binding reaction of PEP to PEPC from Zea mays was measured using the fluorescence probe 2-p-toluidinonaphthalene-6-sulfonate (TNS). The kinetics are described by an allosteric mechanism with a fast reversible bimolecular binding reaction of PEP to a high affinity (tensed) form of PEPC which is in equilibrium with its low affinity (relaxed) form. The association and dissociation rate constants k_(+A) and k_(-A) for the fast binding reaction to the high affinity form were determined to be 1.4 +- 0.15 * 10~4 M~(-1) s~(-1) and 17 +- 6 s~(-1) at pH 8.0. The corresponding dissociation constants K_d = 1.2 +- 0.5 mM for PEP calculated from the kinetic constants, measured by ILTJ and SF, are in good agreement with K_d values achieved in our equilibrium titration experiments or from the data of Michaelis-Menten-type kinetic experiments. PEP preferentially binds to the high affinity binding site of PEPC, shifting the isomerisation equilibrium strongly towards the tensed form, with the consequence that PEPC is activated. Rate constants for the isomerisation process were obtained as k_(B+(0)) = 4.95 +- 0.35 s~(-1) and k_(B-(0)) = 1.25 +- 0.1 s~(-1) at pH 8. Our kinetic data are consistent with the concerted sequential allosteric mechanism introduced by Monod, Wyman and Changeux. In summary, in this study we present, for the first time, data on the kinetics of PEP binding and on the rate of the isomerisation reaction between the two allosteric forms of PEPC.
机译:C_4植物的二氧化碳加工酶磷酸烯醇丙酮酸羧化酶(PEPC)在pH 7.0和pH 8.0下对底物磷酸烯醇丙酮酸(PEP)表现出不同的亲和力。通过确定酶活性,应用荧光滴定和快速反应技术(例如碘激光温度跃迁(ILTJ)和停流(SF))已证明了这一点。使用荧光探针2-对甲苯二萘基萘-6-磺酸盐(TNS)测量PEP与玉米的PEPC的结合反应。动力学是通过变构机制描述的,PEP与PEPC的高亲和力(拉伸)形式具有快速可逆的双分子结合反应,而PEPC与低亲和力(松弛)形式处于平衡状态。与高亲和力形式的快速结合反应的缔合和解离速率常数k _(+ A)和k _(-A)被确定为1.4 +-0.15 * 10〜4 M〜(-1)s〜(-1 )和17 +-6 s〜(-1)在pH 8.0下。根据由ILTJ和SF测量的动力学常数计算得出的PEP的解离常数K_d = 1.2±-0.5 mM与在我们的平衡滴定实验或从Michaelis-Menten型动力学实验数据中获得的K_d值非常吻合。 PEP优先与PEPC的高亲和力结合位点结合,使异构化平衡强烈地向张紧形式移动,从而激活了PEPC。在pH 8下,异构化过程的速率常数为k_(B +(0))= 4.95 +-0.35 s〜(-1)和k_(B-(0))= 1.25±0.1 s〜(-1)。我们的动力学数据与Monod,Wyman和Changeux提出的一致的顺序变构机制相一致。总之,在这项研究中,我们首次提出了PEP结合动力学和PEPC两种变构形式之间异构化反应速率的数据。

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