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通过核磁共振光谱法测定的钙离子结合型S100A1的三维溶液结构。

The three-dimensional solution structure of Ca(2+)-bound S100A1 as determined by NMR spectroscopy.

作者信息

Wright Nathan T, Varney Kristen M, Ellis Karen C, Markowitz Joseph, Gitti Rossitza K, Zimmer Danna B, Weber David J

机构信息

Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, 108 N. Greene St., Baltimore, MD 21201, USA.

出版信息

J Mol Biol. 2005 Oct 21;353(2):410-26. doi: 10.1016/j.jmb.2005.08.027.

DOI:10.1016/j.jmb.2005.08.027
PMID:16169012
Abstract

S100A1 is an EF-hand-containing Ca(2+)-binding protein that undergoes a conformational change upon binding calcium as is necessary to interact with protein targets and initiate a biological response. To better understand how calcium influences the structure and function of S100A1, the three-dimensional structure of calcium-bound S100A1 was determined by multidimensional NMR spectroscopy and compared to the previously determined structure of apo. In total, 3354 nuclear Overhauser effect-derived distance constraints, 240 dihedral constraints, 160 hydrogen bond constraints, and 362 residual dipolar coupling restraints derived from a series of two-dimensional, three-dimensional, and four-dimensional NMR experiments were used in its structure determination (>21 constraints per residue). As with other dimeric S100 proteins, S100A1 is a symmetric homodimer with helices 1, 1', 4, and 4' associating into an X-type four-helix bundle at the dimer interface. Within each subunit there are four alpha-helices and a short antiparallel beta-sheet typical of two helix-loop-helix EF-hand calcium-binding domains. The addition of calcium did not change the interhelical angle of helices 1 and 2 in the pseudo EF-hand significantly; however, there was a large reorientation of helix 3 in the typical EF-hand. The large conformational change exposes a hydrophobic cleft, defined by residues in the hinge region, the C terminus, and regions of helix 3, which are important for the interaction between S100A1 and a peptide (TRTK-12) derived from the actin-capping protein CapZ.

摘要

S100A1是一种含有EF手型结构的钙离子结合蛋白,与钙离子结合时会发生构象变化,这是与蛋白质靶点相互作用并引发生物学反应所必需的。为了更好地理解钙离子如何影响S100A1的结构和功能,通过多维核磁共振光谱法测定了钙离子结合型S100A1的三维结构,并与先前测定的无钙结构进行了比较。在其结构测定中总共使用了3354个基于核Overhauser效应的距离约束、240个二面角约束、160个氢键约束以及从一系列二维、三维和四维核磁共振实验中获得的362个剩余偶极耦合约束(每个残基>21个约束)。与其他二聚体S100蛋白一样,S100A1是一个对称的同二聚体,其螺旋1、1'、4和4'在二聚体界面处形成一个X型四螺旋束。每个亚基内有四个α螺旋和一个短的反平行β折叠,这是两个螺旋-环-螺旋EF手型钙离子结合结构域的典型特征。钙离子的添加并没有显著改变假EF手型中螺旋1和2的螺旋间角度;然而,典型EF手型中的螺旋3发生了较大的重新定向。这种大的构象变化暴露了一个疏水裂缝,该裂缝由铰链区、C末端和螺旋3区域中的残基定义,这些对于S100A1与源自肌动蛋白封端蛋白CapZ的肽(TRTK-12)之间的相互作用很重要。

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