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Op18/微管蛋白相互作用的热力学

Thermodynamics of the Op18/stathmin-tubulin interaction.

作者信息

Honnappa Srinivas, Cutting Brian, Jahnke Wolfgang, Seelig Joachim, Steinmetz Michel O

机构信息

Structural Biology, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.

出版信息

J Biol Chem. 2003 Oct 3;278(40):38926-34. doi: 10.1074/jbc.M305546200. Epub 2003 Jul 14.

Abstract

Op18/stathmin (stathmin) is an intrinsically disordered protein involved in the regulation of the microtubule filament system. One function of stathmin is to sequester tubulin dimers into assembly incompetent complexes, and recent studies revealed two tubulin binding sites per stathmin molecule. Using high sensitivity isothermal titration calorimetry, we document that at 10 degrees C and under the conditions of 80 mM PIPES, pH 6.8, 1 mM EGTA, 1 mM MgCl2, 1 mM GTP these two binding sites are of equal affinity with an equilibrium binding constant of K0 = 6.0 x 10(6) m(-1). The obtained large negative molar heat capacity change of deltaCp0 = -860 cal mol(-1) K(-1) (referring to tubulin) for the tubulin-stathmin binding equilibrium suggests that the hydrophobic effect is the major driving force of the binding reaction. Replacing GTP by GDP on beta-tubulin had no significant effect on the thermodynamic parameters of the tubulin-stathmin binding equilibrium. The proposed pH-sensitive dual function of stathmin was further evaluated by circular dichroism spectroscopy and nuclear magnetic resonance. At low temperatures, stathmin was found to be extensively helical but devoid of any stable tertiary structure. However, in complex with two tubulin subunits stathmin adopts a stable conformation. Both the stability and conformation of the individual proteins and complexes were not significantly affected by small changes in pH. A 4-fold decrease in affinity of stathmin for tubulin was revealed at pH 7.5 compared with pH 6.8. This decrease could be attributed to a weaker binding of the C terminus of stathmin. These findings do not support the view that stathmin works as a pH-sensitive protein.

摘要

Op18/微管相关蛋白(stathmin)是一种内在无序蛋白,参与微管丝系统的调节。stathmin的一个功能是将微管蛋白二聚体隔离到无组装能力的复合物中,最近的研究表明每个stathmin分子有两个微管蛋白结合位点。使用高灵敏度等温滴定量热法,我们证明在10℃以及80 mM PIPES、pH 6.8、1 mM EGTA、1 mM MgCl2、1 mM GTP的条件下,这两个结合位点具有相同的亲和力,平衡结合常数K0 = 6.0×10⁶ m⁻¹。对于微管蛋白 - stathmin结合平衡,得到的大的负摩尔热容变化ΔCp0 = -860 cal mol⁻¹ K⁻¹(以微管蛋白计)表明疏水效应是结合反应的主要驱动力。在β - 微管蛋白上用GDP取代GTP对微管蛋白 - stathmin结合平衡的热力学参数没有显著影响。通过圆二色光谱和核磁共振进一步评估了stathmin提出的pH敏感双功能。在低温下,发现stathmin广泛呈螺旋状,但没有任何稳定的三级结构。然而,与两个微管蛋白亚基形成复合物时,stathmin会采用稳定的构象。单个蛋白质及其复合物的稳定性和构象都不会因pH的微小变化而受到显著影响。与pH 6.8相比,在pH 7.5时stathmin对微管蛋白的亲和力降低了4倍。这种降低可能归因于stathmin C末端的结合较弱。这些发现不支持stathmin作为pH敏感蛋白起作用的观点。

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