Lehotzky A, Telegdi M, Liliom K, Ovádi J
Institute of Enzymology, Hungarian Academy of Sciences, Budapest.
J Biol Chem. 1993 May 25;268(15):10888-94.
The linked equilibria involved in the binding of phosphofructokinase (EC 2.7.1.11, ATP:D-fructose-6-phosphate 1-phosphotransferase) to tubulin and microtubules were studied at high ionic strength in vitro. The concentration-dependent dissociation of phosphofructokinase was analyzed in the absence and presence of tubulin or microtubules, and the binding of kinase to the tubulin dimer and microtubules was compared. Enzyme activity of phosphofructokinase was inhibited by both tubulin and microtubules: the relative inhibition increased with decreasing enzyme concentration. The complex formation between phosphofructokinase and tubulin was demonstrated by means of fluorescent anisotropy. Concentration-dependent copelleting of the kinase with taxol-stabilized microtubules revealed binding of the enzyme to microtubules as well as phosphofructokinase-enhanced pelleting of microtubules. The binding data agree with the enzyme kinetic findings that the inactive dissociated forms of phosphofructokinase (monomer-dimer) are involved in the heterologous complex formation. Microtubule reorganization (bundle formation) by phosphofructokinase was established by turbidity measurements and sedimentation experiments. The binding data are consistent with a simple molecular model for the interactions in phosphofructokinase-tubulin/microtubules systems.
在体外高离子强度条件下,研究了磷酸果糖激酶(EC 2.7.1.11,ATP:D-果糖-6-磷酸1-磷酸转移酶)与微管蛋白及微管结合过程中涉及的连锁平衡。在不存在和存在微管蛋白或微管的情况下,分析了磷酸果糖激酶浓度依赖性解离情况,并比较了激酶与微管蛋白二聚体及微管的结合情况。微管蛋白和微管均抑制磷酸果糖激酶的酶活性:相对抑制作用随酶浓度降低而增加。通过荧光各向异性证明了磷酸果糖激酶与微管蛋白之间形成了复合物。激酶与紫杉醇稳定化微管的浓度依赖性共沉淀显示该酶与微管结合,同时也显示了磷酸果糖激酶增强了微管的沉淀。结合数据与酶动力学研究结果一致,即磷酸果糖激酶的无活性解离形式(单体-二聚体)参与了异源复合物的形成。通过浊度测量和沉降实验证实了磷酸果糖激酶可引起微管重组(束形成)。结合数据与磷酸果糖激酶-微管蛋白/微管系统相互作用的简单分子模型相符。