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配体诱导的绒毛蛋白构象变化,一种受钙调控的肌动蛋白调节蛋白。

Ligand-induced conformational changes in villin, a calcium-controlled actin-modulating protein.

作者信息

Hesterberg L K, Weber K

出版信息

J Biol Chem. 1983 Jan 10;258(1):359-64.

PMID:6848507
Abstract

The physical structure of villin, a Ca2+-modulated regulator protein of actin filament organization, has been studied in the absence and presence of Ca2+ using analytical ultracentrifugation, gel chromatography, ultraviolet difference spectroscopy, and circular dichroism. Villin exhibits an intrinsic sedimentation coefficient, S020, w, of 5.0 s and an apparent Stokes radius, Rs, of 44 A in EGTA-containing buffer. In the presence of greater than 20 microM Ca2+, villin shows a S020, w of 4.1 s and Rs of 49 A, indicative of a conformational change in the protein. No significant changes in the partial specific volume (0.73) of villin are observed in the presence of Ca2+, and sedimentation equilibrium studies demonstrates that the effects of Ca2+ are not due to a change in the molecular mass (95,000 daltons). The combined hydrodynamic data suggest that villin is an asymmetric molecule with an axial ratio of 4.5:1, based on a prolate ellipsoid model at 0.5 g/g of hydration, corresponding to a maximum length of 84 A. The presence of Ca2+ changes the shape to a more asymmetric molecule with an axial ratio of 8:1 and a maximum length of 123 A. Since the large proteolytic fragment, villin core, does not exhibit the strong structural change of villin, an important function of the small villin headpiece domain in the observed conformational change of intact villin is suggested. The results indicate new aspects of the function of villin as cross-linker in microvillus core filament bundles and the disintegration of these structures in the presence of calcium.

摘要

绒毛蛋白是一种对肌动蛋白丝组织起钙调节作用的调节蛋白,利用分析超速离心、凝胶色谱、紫外差光谱和圆二色性等技术,在有无钙离子存在的情况下对其物理结构进行了研究。在含乙二醇双四乙酸(EGTA)的缓冲液中,绒毛蛋白的固有沉降系数S020,w为5.0 s,表观斯托克斯半径Rs为44 Å。当钙离子浓度大于20 μM时,绒毛蛋白的S020,w为4.1 s,Rs为49 Å,表明该蛋白发生了构象变化。在有钙离子存在的情况下,未观察到绒毛蛋白的偏比容(0.73)有显著变化,沉降平衡研究表明钙离子的作用并非由于分子量(95,000道尔顿)的改变。综合流体动力学数据表明,基于0.5 g/g水合状态下的长椭球体模型,绒毛蛋白是一个轴比为4.5:1的不对称分子,对应最大长度为84 Å。钙离子的存在使形状变为轴比为8:1、最大长度为123 Å的更不对称分子。由于大的蛋白水解片段——绒毛蛋白核心,未表现出绒毛蛋白强烈的结构变化,因此推测小的绒毛蛋白头部结构域在完整绒毛蛋白观察到的构象变化中起重要作用。结果表明了绒毛蛋白作为微绒毛核心丝束交联剂的功能的新方面,以及在钙存在时这些结构的解体。

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