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三氟拉嗪与S100b的Ca2+依赖性相互作用的光谱研究。

Spectral studies of the Ca2+-dependent interaction of trifluoperazine with S100b.

作者信息

Pingerelli P L, Mizukami H, Mooney M J, Schlaepfer A L

机构信息

Department of Biological Sciences, Wayne State University, Detroit, Michigan 48202.

出版信息

J Protein Chem. 1989 Apr;8(2):183-96. doi: 10.1007/BF01024943.

Abstract

S100b is a calcium-binding protein that will bind to many calmodulin target molecules in a Ca2+-dependent manner. In order to study the Ca2+-dependent binding properties of S100b, its interaction with a calmodulin antagonist, trifluoperazine (TFP), was investigated using [19F]- and [1H]-NMR and UV-difference spectroscopy. It was estimated from [19F]-NMR that in the absence of Ca2+, the k1/2 value of TFP was 130 microM, while its k1/2 value decreased to 28 microM in the presence of Ca2+. The addition of KCl was not antagonistic to the Ca2+-dependent interaction of TFP to S100b. The chemical exchange rate of TFP with Ca2+-bound S100b was estimated to be 9 x 10(2) sec-1. By comparison with TFP-calmodulin exchange rates, it is suggested that the TFP-binding site on S100b is structurally different from its binding sites on calmodulin. Proton NMR resonance broadening in the range 6.8-7.2 ppm, corresponding to phenylalanine nuclei of S100b, indicates that these residues may be involved in TFP binding. Addition of Ca2+ to a 1:1 mixture of S100b and TFP resulted in a red-shifted UV-difference spectrum, while no significant difference spectrum was detected when Mg2+ was added to a S100b-TFP solution. Thus, we suggest that Ca2+ induces the exposure of a hydrophobic domain on S100b containing one or more phenylalanine residues that will bind TFP but that this domain is different from the hydrophobic domain on calmodulin.

摘要

S100b是一种钙结合蛋白,它能够以钙离子依赖的方式与许多钙调蛋白靶分子结合。为了研究S100b的钙离子依赖结合特性,利用[19F]-和[1H]-核磁共振以及紫外差光谱法研究了它与钙调蛋白拮抗剂三氟拉嗪(TFP)的相互作用。通过[19F]-核磁共振估计,在没有钙离子的情况下,TFP的k1/2值为130微摩尔,而在有钙离子存在时,其k1/2值降至28微摩尔。添加氯化钾对TFP与S100b的钙离子依赖相互作用没有拮抗作用。TFP与钙离子结合的S100b的化学交换速率估计为9×10(2)秒-1。通过与TFP-钙调蛋白交换速率比较,表明S100b上的TFP结合位点在结构上与其在钙调蛋白上的结合位点不同。对应于S100b苯丙氨酸核的6.8-7.2 ppm范围内的质子核磁共振共振加宽表明,这些残基可能参与TFP结合。向S100b和TFP的1:1混合物中添加钙离子会导致紫外差光谱发生红移,而向S100b-TFP溶液中添加镁离子时未检测到明显的差光谱。因此,我们认为钙离子诱导了S100b上一个含有一个或多个苯丙氨酸残基的疏水结构域的暴露,该结构域将结合TFP,但这个结构域与钙调蛋白上的疏水结构域不同。

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