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通过核磁共振确定的钙信号蛋白脱辅基S100A1的三维溶液结构。

Three-dimensional solution structure of the calcium-signaling protein apo-S100A1 as determined by NMR.

作者信息

Rustandi Richard R, Baldisseri Donna M, Inman Keith G, Nizner Peter, Hamilton Shannon M, Landar Aimee, Landar Alexander, Zimmer Danna B, Weber David J

机构信息

Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, 108 North Greene Street, Baltimore, Maryland 21201, USA.

出版信息

Biochemistry. 2002 Jan 22;41(3):788-96. doi: 10.1021/bi0118308.

Abstract

S100A1, a member of the S100 protein family, is an EF-hand containing Ca(2+)-binding protein (93 residues per subunit) with noncovalent interactions at its dimer interface. Each subunit of S100A1 has four alpha-helices and a small antiparallel beta-sheet consistent with two helix-loop-helix calcium-binding domains [Baldiserri et al. (1999) J. Biomol. NMR 14, 87-88]. In this study, the three-dimensional structure of reduced apo-S100A1 was determined by NMR spectroscopy using a total of 2220 NOE distance constraints, 258 dihedral angle constraints, and 168 backbone hydrogen bond constraints derived from a series of 2D, 3D, and 4D NMR experiments. The final structure was found to be globular and compact with the four helices in each subunit aligning to form a unicornate-type four-helix bundle. Intermolecular NOE correlations were observed between residues in helices 1 and 4 from one subunit to residues in helices 1' and 4' of the other subunit, respectively, consistent with the antiparallel alignment of the two subunits to form a symmetric X-type four-helix bundle as found for other members of the S100 protein family. Because of the similarity of the S100A1 dimer interface to that found for S100B, it was possible to calculate a model of the S100A1/B heterodimer. This model is consistent with a number of NMR chemical shift changes observed when S100A1 is titrated into a sample of (15)N-labeled S100B. Helix 3 (and 3') of S100A1 was found to have an interhelical angle of -150 degrees with helix 4 (and 4') in the apo state. This crossing angle is quite different (>50 degrees ) from that typically found in other EF-hand containing proteins such as apocalmodulin and apotroponin C but more similar to apo-S100B, which has an interhelical angle of -166 degrees. As with S100B, it is likely that the second EF-hand of apo-S100A1 reorients dramatically upon the addition of Ca(2+), which can explain the Ca(2+) dependence that S100A1 has for binding several of its biological targets.

摘要

S100A1是S100蛋白家族的成员之一,是一种含有EF手型结构的Ca(2+)结合蛋白(每个亚基93个残基),在其二聚体界面存在非共价相互作用。S100A1的每个亚基有四个α螺旋和一个小的反平行β折叠,与两个螺旋-环-螺旋钙结合结构域一致[Baldiserri等人(1999年)《生物分子核磁共振杂志》14卷,87 - 88页]。在本研究中,通过核磁共振光谱法确定了还原型脱辅基S100A1的三维结构,使用了总共2220个NOE距离约束、258个二面角约束和168个主链氢键约束,这些约束来自一系列二维、三维和四维核磁共振实验。最终结构被发现是球状且紧凑的,每个亚基中的四个螺旋排列形成一个单角型四螺旋束。观察到一个亚基的螺旋1和4中的残基与另一个亚基的螺旋1'和4'中的残基之间存在分子间NOE相关性,这与两个亚基的反平行排列一致,从而形成一个对称的X型四螺旋束,正如在S100蛋白家族的其他成员中所发现的那样。由于S100A1二聚体界面与S100B的相似,所以有可能计算出S100A1/B异二聚体的模型。该模型与将S100A1滴定到(15)N标记的S100B样品中时观察到的许多核磁共振化学位移变化一致。发现脱辅基状态下S100A1的螺旋3(和3')与螺旋4(和4')的螺旋间角度为 - 150度。这个交叉角度与其他含EF手型结构的蛋白质如脱辅基钙调蛋白和脱辅基肌钙蛋白C中通常发现的角度有很大不同(>50度),但与脱辅基S100B更相似,后者的螺旋间角度为 - 166度。与S100B一样,脱辅基S100A1的第二个EF手型结构在添加Ca(2+)后可能会发生显著重排,这可以解释S100A1对其几个生物学靶点的结合具有Ca(2+)依赖性。

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