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X-Ray crystal structure and molecular dynamics simulations of silver hake parvalbumin (Isoform B).

机译:无须鳕银小白蛋白(亚型B)的X射线晶体结构和分子动力学模拟。

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摘要

Parvalbumins constitute a class of calcium-binding proteins characterized by the presence of several helix-loop-helix (EF-hand) motifs. In a previous study (Revett SP, King G, Shabanowitz J, Hunt DF, Hartman KL, Laue TM, Nelson DJ, 1997, Protein Sci 7:2397-2408), we presented the sequence of the major parvalbumin isoform from the silver hake (Merluccius bilinearis) and presented spectroscopic and structural information on the excised "EF-hand" portion of the protein. In this study, the X-ray crystal structure of the silver hake major parvalbumin has been determined to high resolution, in the frozen state, using the molecular replacement method with the carp parvalbumin structure as a starting model. The crystals are orthorhombic, space group C2221, with a = 75.7 A, b = 80.7 A, and c = 42.1 A. Data were collected from a single crystal grown in 15% glycerol, which served as a cryoprotectant for flash freezing at -188 degrees C. The structure refined to a conventional R-value of 21% (free R 25%) for observed reflections in the range 8 to 1.65 A [1 > 2sigma(I)]. The refined model includes an acetylated amino terminus, 108 residues (characteristic of a beta parvalbumin lineage), 2 calcium ions, and 114 water molecules per protein molecule. The resulting structure was used in molecular dynamics (MD) simulations focused primarily on the dynamics of the ligands coordinating the Ca2+ ions in the CD and EF sites. MD simulations were performed on both the fully Ca2+ loaded protein and on a Ca2+ deficient variant, with Ca2+ only in the CD site. There was substantial agreement between the MD and X-ray results in addressing the issue of mobility of key residues in the calcium-binding sites, especially with regard to the side chain of Ser55 in the CD site and Asp92 in the EF site.
机译:小白蛋白构成了一类钙结合蛋白,其特征是存在几个螺旋-环-螺旋(EF-hand)基序。在先前的研究中(Revett SP,King G,Shabanowitz J,Hunt DF,Hartman KL,Laue TM,Nelson DJ,1997,Protein Sci 7:2397-2408),我们介绍了来自银鳕鱼的主要小白蛋白同工型的序列(Merluccius bilinearis),并提出了该蛋白质的“ EF手”部分的光谱和结构信息。在这项研究中,已使用分子替代法以鲤鱼小白蛋白的结构作为起始模型,测定了冷冻状态下银鳕鱼主要小白蛋白的X射线晶体结构的高分辨率。晶体是正交晶系,空间群C2221,a = 75.7 A,b = 80.7 A,c = 42.1A。从在15%甘油中生长的单晶收集数据,该单晶用作冷冻保护剂,用于在-188处快速冷冻。对于在8到1.65 A [1> 2sigma(I)]范围内观察到的反射,将结构精炼到21%的常规R值(游离R 25%)。改进的模型包括一个乙酰化的氨基末端,108个残基(β小白蛋白谱系的特征),2个钙离子和每个蛋白质分子114个水分子。所得的结构用于分子动力学(MD)模拟,主要侧重于配体在CD和EF位点上协调Ca2 +离子的动力学。 MD模拟是在完全装载Ca2 +的蛋白质和缺乏Ca2 +的变异体上进行的,其中Ca2 +仅在CD部位。 MD和X射线结果在解决钙结合位点中关键残基的迁移性问题上,尤其是CD位点中Ser55的侧链和EF位点中Asp92的侧链方面,存在重大共识。

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