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二价阳离子参与6-磷酸果糖与克氏锥虫磷酸果糖激酶的结合:动力学和磁共振研究

Involvement of a divalent cation in the binding of fructose 6-phosphate to Trypanosoma cruzi phosphofructokinase: kinetic and magnetic resonance studies.

作者信息

Urbina J A, Ysern X, Mildvan A S

机构信息

Centro de Biología Celular, Escuela de Biología, Facultad de Ciencias, Universidad Central de Venezuela, Caracas.

出版信息

Arch Biochem Biophys. 1990 Apr;278(1):187-94. doi: 10.1016/0003-9861(90)90247-v.

Abstract

When Mg2+ ions were replaced by Mn2+ in the assay of Trypanosoma (Schizotrypanum) cruzi phosphofructokinase (ATP:D-fructose-6-phosphate 1-phosphotransferase, EC 2.7.1.11) the Km for D-fructose 6-phosphate (F6P) was reduced threefold while the corresponding constant for ATP was essentially unaffected. A detailed kinetic investigation showed that the apparent Km for F6P decreased monotonically with increasing free Mn2+ concentrations, from a limiting value of 5.7 mM in its absence to a limiting value of 1.1 mM in the presence of saturating concentrations of the ion; the Vmax of the enzyme was, on the other hand, not affected by the concentration of Mn2+. Conversely, it was shown that the apparent Km for Mn2+ at fixed MnATP concentrations decreased with increasing F6P concentrations, from a limiting value of 30 microM in the absence of the sugar phosphate to 9 microM at saturating concentrations of the substrate, while the apparent Vmax increased monotonically from zero to its limiting value. Both electron paramagnetic resonance and water proton longitudinal relaxation studies showed binding of one Mn2+ ion per 18,000 Da catalytic subunit of enzyme in the absence of F6P, with a dissociation constant of 57 +/- 4 microM, comparable to the apparent Km for the ion in the absence of F6P. The presence of saturating level of F6P decreases the value of the dissociation constant of Mn2+ to a limiting value of 7.9 microM in agreement with the results of the kinetic analysis. The substrate F6P decreases the enhancement of the water proton longitudinal relaxation rate in a saturable fashion, suggesting displacement of water molecules coordinated to the enzyme-bound Mn2+ ion by the sugar phosphate. Computer fitting of the several dissociation constants and relaxation enhancements for binary and ternary complexes gives a value of 7.9 mM for the dissociation constant of the enzyme-F6P complex in the absence of Mn2+ and 1.1 mM in the presence of saturating concentrations of the ion, in excellent agreement with the respective Km values of F6P extrapolated to zero and saturating Mn2+, respectively. Studies of the frequency dependence of the water proton longitudinal relaxation rate enhancements in the presence of both binary (enzyme-Mn2+) and ternary (enzyme-Mn2(+)-F6P) complexes, are most simply explained by assuming two exchangeable water molecules in the coordination sphere of the enzyme-bound Mn2+ in the binary complex, while in the ternary complex the data are consistent with the displacement of one of the water molecule from the coordination sphere with no significant alteration of the correlation time. Overall, the kinetic and binding data are consistent with the formation of an enzyme-metal-F6P bridge complex at the active site of T. cruzi phosphofructokinase, a coordination scheme which is unique among the phosphofructokinases.

摘要

在克氏锥虫(裂殖锥虫)磷酸果糖激酶(ATP:D-果糖-6-磷酸1-磷酸转移酶,EC 2.7.1.11)的测定中,当Mg2+离子被Mn2+取代时,D-果糖6-磷酸(F6P)的Km降低了三倍,而ATP的相应常数基本不受影响。详细的动力学研究表明,F6P的表观Km随着游离Mn2+浓度的增加而单调降低,从不存在时的极限值5.7 mM降至离子饱和浓度存在时的极限值1.1 mM;另一方面,酶的Vmax不受Mn2+浓度的影响。相反,结果表明,在固定的MnATP浓度下,Mn2+的表观Km随着F6P浓度的增加而降低,从不存在磷酸糖时的极限值30 μM降至底物饱和浓度时的9 μM,而表观Vmax从零单调增加至其极限值。电子顺磁共振和水质子纵向弛豫研究均表明,在不存在F6P的情况下,每18,000 Da酶催化亚基结合一个Mn2+离子,解离常数为57±4 μM,与不存在F6P时该离子的表观Km相当。F6P饱和水平的存在将Mn2+的解离常数降低至极限值7.9 μM,这与动力学分析结果一致。底物F6P以可饱和的方式降低水质子纵向弛豫率的增强,表明磷酸糖取代了与酶结合的Mn2+离子配位的水分子。对二元和三元复合物的几个解离常数和弛豫增强进行计算机拟合,得出在不存在Mn2+时酶-F6P复合物的解离常数为7.9 mM,在离子饱和浓度存在时为1.1 mM,与分别外推至零和饱和Mn2+时F6P的各自Km值非常一致。对二元(酶-Mn​​2+)和三元(酶-Mn2(+)-F6P)复合物存在下水质子纵向弛豫率增强的频率依赖性研究,最简单的解释是假设二元复合物中酶结合的Mn2+配位球中有两个可交换的水分子,而在三元复合物中,数据与一个水分子从配位球中被取代且相关时间无显著变化一致。总体而言,动力学和结合数据与克氏锥虫磷酸果糖激酶活性位点形成酶-金属-F6P桥复合物一致,这种配位方案在磷酸果糖激酶中是独特的。

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