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通过核磁共振确定的突变型钙结合蛋白D9k的溶液结构表明,钙结合位点可以呈现不同的折叠形式。

The solution structures of mutant calbindin D9k's, as determined by NMR, show that the calcium-binding site can adopt different folds.

作者信息

Johansson C, Ullner M, Drakenberg T

机构信息

Chemical Center, Lund University, Sweden.

出版信息

Biochemistry. 1993 Aug 24;32(33):8429-38.

PMID:8357794
Abstract

The complete 1H NMR assignments have been obtained for five mutant proteins of calbindin D9k and the three-dimensional solution structures determined for two of the mutants. The structures have been determined using distance geometry and simulated annealing, with distance constraints from NMR. All mutants have modifications in the first calcium-binding site of calbindin (the N-terminal site designated the pseudo-EF-hand). The 3D structure of the mutant with the most extensive modifications in the pseudo-EF-hand shows that the site has turned inside-out and coordinates calcium as in the normal EF-hand (the C-terminal site). In a pseudo-EF-hand loop the calcium is coordinated by main-chain carbonyls, whereas calcium in the normal EF-hand is coordinated by side-chain carboxylates. The 3D structures and 1H NMR assignments show that in order to accomplish a change in the coordinating ligands of the pseudo-EF-hand the loop must be 12 residues long and have glycine in the sixth position. It does, however, seem possible to have alanine instead of aspartic acid in the first calcium coordinating position. The overall global fold of the proteins has not been affected by the mutations in the calcium-binding site, as compared to the wild-type calbindin D9k [Kördel, J., Skelton, N. J., Akke, M., & Chazin, W. J. (1993) J. Mol. Biol. (in press)]. The structures consist of two helix-calcium-binding loop-helix motifs, the so called EF-hands, and the loops are connected by a short antiparallel beta-sheet. All helices are pairwise in an antiparallel orientation.

摘要

已完成对钙结合蛋白D9k的五种突变蛋白的完整1H NMR归属,并确定了其中两种突变体的三维溶液结构。这些结构是使用距离几何和模拟退火方法确定的,距离约束来自核磁共振。所有突变体在钙结合蛋白的第一个钙结合位点(N端位点,称为假EF手)都有修饰。在假EF手中修饰最广泛的突变体的三维结构表明,该位点已经发生了内外翻转,并像正常EF手(C端位点)一样结合钙。在假EF手环中,钙由主链羰基配位,而在正常EF手中,钙由侧链羧酸盐配位。三维结构和1H NMR归属表明,为了实现假EF手配位配体的变化,环必须有12个残基长,并且在第六位有甘氨酸。然而,在第一个钙配位位置用丙氨酸代替天冬氨酸似乎也是可能的。与野生型钙结合蛋白D9k相比,钙结合位点的突变并未影响蛋白质的整体全局折叠[科尔德尔,J.,斯凯尔顿,N. J.,阿克,M.,&查津,W. J.(1993年)《分子生物学杂志》(即将出版)]。这些结构由两个螺旋-钙结合环-螺旋基序组成,即所谓的EF手,环由一个短的反平行β-折叠连接。所有螺旋都是两两反平行排列的。

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The solution structures of mutant calbindin D9k's, as determined by NMR, show that the calcium-binding site can adopt different folds.通过核磁共振确定的突变型钙结合蛋白D9k的溶液结构表明,钙结合位点可以呈现不同的折叠形式。
Biochemistry. 1993 Aug 24;32(33):8429-38.
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