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Isocitrate lyase from Phycomyces blakesleeanus. The role of Mg2+ ions, kinetics and evidence for two classes of modifiable thiol groups.

机译:枯草芽孢杆菌的异柠檬酸裂合酶。 Mg2 +离子的作用,动力学和两类可修饰硫醇基团的证据。

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摘要

Isocitrate lyase was purified from Phycomyces blakesleeanus N.R.R.L. 1555(-). The native enzyme has an Mr of 240,000. The enzyme appeared to be a tetramer with apparently identical subunits of Mr 62,000. The enzyme requires Mg2+ for activity, and the data suggest that the Mg2(+)-isocitrate complex is the true substrate and that Mg2+ ions act as a non-essential activator. The kinetic mechanism of the enzyme was investigated by using product and dead-end inhibitors of the cleavage and condensation reactions. The data indicated an ordered Uni Bi mechanism and the kinetic constants of the model were calculated. The spectrophotometric titration of thiol groups in Phycomyces isocitrate lyase with 5.5'-dithiobis-(2-nitrobenzoic acid) gave two free thiol groups per subunit of enzyme in the native state and three in the denatured state. The isocitrate lyase was completely inactivated by iodoacetate, with non-linear kinetics. The inactivation data suggest that the enzyme has two classes of modifiable thiol groups. The results are also in accord with the formation of a non-covalent enzyme-inhibitor complex before irreversible modification of the enzyme. Both the equilibrium constants for formation of the complex and the first-order rate constants for the irreversible modification step were determined. The partial protective effect of isocitrate and Mg2+ against iodoacetate inactivation was investigated in a preliminary form.
机译:异柠檬酸裂合酶从Phycomyces blakesleeanus N.R.R.L. 1555(-)。天然酶的Mr为240,000。该酶似乎是四聚体,具有与Mr 62,000相同的亚基。该酶需要Mg2 +才能发挥活性,数据表明Mg2(+)-异柠檬酸盐复合物是真正的底物,Mg2 +离子充当非必需激活剂。通过使用产物和裂解和缩合反应的末端抑制剂研究了酶的动力学机理。数据表明有序的Uni Bi机制,并计算了模型的动力学常数。用5.5'-二硫代双-(2-硝基苯甲酸)分光光度法滴定异柠檬酸芽孢杆菌裂解酶中的巯基,每个酶亚单位在天然状态下具有两个游离巯基,在变性状态下具有三个。异柠檬酸裂合酶被碘乙酸盐完全灭活,具有非线性动力学。灭活数据表明该酶具有两类可修饰的巯基。结果也与在酶的不可逆修饰之前形成非共价酶-抑制剂复合物相符。确定了形成配合物的平衡常数和不可逆改性步骤的一级速率常数。初步研究了异柠檬酸和Mg2 +对碘乙酸酯失活的部分保护作用。

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