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与小清蛋白的离子相互作用。四种不同离子环境下梭子鱼4.10小清蛋白的晶体结构测定。

Ionic interactions with parvalbumins. Crystal structure determination of pike 4.10 parvalbumin in four different ionic environments.

作者信息

Declercq J P, Tinant B, Parello J, Rambaud J

机构信息

Laboratoire de Chimie-Physique et de Cristallographie, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.

出版信息

J Mol Biol. 1991 Aug 20;220(4):1017-39. doi: 10.1016/0022-2836(91)90369-h.

Abstract

The crystal structure of the Ca-loaded form of pike 4.10 parvalbumin (minor component from pike muscle belonging to the beta phylogenetic series), with both its primary sites CD and EF occupied by Ca2+ ions and its third site occupied by an ammonium ion, as previously determined at 1.93 A resolution, has now been refined to a resolution of 1.65 A. The crystallization of this parvalbumin in different ionic environments has allowed three novel non-isomorphous crystalline forms to be obtained: (1) a first form, crystallized in the presence of a mixture of ammonium sulphate and manganese sulphate, for which all the cation binding sites in the protein are occupied by Mn2+; (2) a second form crystallized in the presence of MgSO4 as the precipitating agent, only differs from the Ca/NH4 form by the occupation of the third site by Mg2+, whereas the primary sites remain occupied by Ca2+; (3) a third form, also crystallized in the presence of MgSO4, corresponds to a well-defined molecular species with both the primary EF site and the third site occupied by Mg2+, whereas the primary CD site remains occupied by CA2+. The corresponding molecular structures reported here have been determined at resolutions between 1.8 and 2.4 A. The comparison of the different crystal structures allows the structural modifications accompanying the substitution of the primary sites by cations differing significantly in their ionic radii (Ca2+, Mn2+, Mg2+) to be investigated in detail, and it also leads to a precise description of the third site in a typical beta parvalbumin. The substitution Ca2+ by Mg2+ within the primary site EF is characterized by a "contraction" of the co-ordination sphere, with a decrease of the mean oxygen-metal distance by a value of 0.25 A and a decrease of the co-ordination number from 7 to 6, as a consequence of the loss of a bidentate ligand (Glu101), which becomes a monodentate one. Such an adaptation of the co-ordination sphere around a cation of smaller size involves, among others, the transformation of the Glu101 side-chain from the stable gauche(+) form to the less stable gauche(-) form. The third site is clearly described as a satellite of the CD primary site, since both sites possess common protein ligands, such as Asp53 and Glu59. Furthermore, Asp61 appears as a specific ligand of the third site in the different environments investigated in this work. We finally discuss the relevance of the third site to parvalbumin phylogeny.

摘要

梭子鱼4.10小清蛋白(属于β系统发育系列的梭子鱼肌肉中的次要成分)的钙负载形式的晶体结构,其主要位点CD和EF均被Ca2+离子占据,第三个位点被铵离子占据,如之前在1.93 Å分辨率下所确定的,现在已精修至1.65 Å分辨率。这种小清蛋白在不同离子环境中的结晶使得获得了三种新的非同晶型晶体形式:(1)第一种形式,在硫酸铵和硫酸锰的混合物存在下结晶,其中蛋白质中的所有阳离子结合位点均被Mn2+占据;(2)第二种形式,在硫酸镁作为沉淀剂的存在下结晶,与Ca/NH4形式的不同仅在于第三个位点被Mg2+占据,而主要位点仍被Ca2+占据;(3)第三种形式,同样在硫酸镁存在下结晶,对应于一种明确的分子物种,其主要EF位点和第三个位点均被Mg2+占据,而主要CD位点仍被Ca2+占据。这里报道的相应分子结构已在1.8至2.4 Å的分辨率下确定。对不同晶体结构的比较使得能够详细研究随着主要位点被离子半径差异显著的阳离子(Ca2+、Mn2+、Mg2+)取代而伴随的结构修饰,并且还能对典型β小清蛋白中的第三个位点进行精确描述。主要位点EF内Ca2+被Mg2+取代的特征是配位球的“收缩”,平均氧-金属距离减小0.25 Å,配位数从7降至6,这是由于一个双齿配体(Glu101)丢失,变成了单齿配体。围绕较小尺寸阳离子的配位球的这种适应性变化尤其涉及Glu101侧链从稳定的gauche(+)形式转变为较不稳定的gauche(-)形式。第三个位点被明确描述为CD主要位点的卫星,因为这两个位点具有共同的蛋白质配体,如Asp53和Glu59。此外,在本研究中所研究的不同环境中,Asp61似乎是第三个位点的特异性配体。我们最后讨论了第三个位点与小清蛋白系统发育的相关性。

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