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钙离子和锌离子与人核 S100A2 及突变蛋白的结合。

Binding of Ca2+ and Zn2+ to human nuclear S100A2 and mutant proteins.

作者信息

Franz C, Durussel I, Cox J A, Schäfer B W, Heizmann C W

机构信息

Department of Pediatrics, Division of Clinical Chemistry and Biochemistry, University of Zürich, CH-8032 Zürich, Switzerland.

出版信息

J Biol Chem. 1998 Jul 24;273(30):18826-34. doi: 10.1074/jbc.273.30.18826.

Abstract

The Ca2+-binding protein S100A2 is an unusual member of the S100 family, characterized by its nuclear localization and down-regulated expression in tumorigenic cells. In this study, we investigated the properties of human recombinant S100A2 (wtS100A2) and of two mutants in which the amino-terminal Ca2+-binding site I (N mutant) and in addition the carboxyl-terminal site II (NC mutant) were replaced by the canonical loop (EF-site) of alpha-parvalbumin. Size exclusion chromatography and circular dichroism showed that, irrespective of the state of cation binding, wtS100A2 and mutants are dimers and rich in alpha-helical structure. Flow dialysis revealed that wtS100A2 binds four Ca2+ atoms per dimer with pronounced positive cooperativity. Both mutants also bind four Ca2+ atoms but with a higher affinity than wtS100A2 and with negative cooperativity. The binding of the first two Ca2+ ions to the N mutant occurred with 100-fold higher affinity than in wtS100A2 and a 2-fold increase for the last two Ca2+ ions. A further 2-3-fold increase of affinity was observed for respective binding steps of the NC mutant. The Hummel-Dryer method demonstrated that the wild type and mutants bind four Zn2+ atoms per dimer with similar affinity. Fluorescence and difference spectrophotometry showed that the binding of Ca2+ and Zn2+ induces considerable conformational changes, mostly attributable to changes in the microenvironment of Tyr76 located in site II. Fluorescence enhancement of 4,4'-dianilino-1, 1'-binaphthyl-5,5'-disulfonic acid clearly indicated that Ca2+ and Zn2+ binding induce a hydrophobic patch at the surface of wtS100A2, which, as in calmodulin, may be instrumental for the regulatory role of S100A2 in the nucleus.

摘要

钙结合蛋白S100A2是S100家族中一个特殊的成员,其特点是定位于细胞核且在致瘤细胞中表达下调。在本研究中,我们研究了人重组S100A2(野生型S100A2)以及两个突变体的特性,这两个突变体中氨基末端的钙结合位点I(N突变体)以及另外羧基末端的位点II(NC突变体)被α-小白蛋白的典型环(EF位点)所取代。尺寸排阻色谱法和圆二色性表明,无论阳离子结合状态如何,野生型S100A2和突变体均为二聚体且富含α-螺旋结构。流动透析显示,野生型S100A2每个二聚体结合四个钙离子,具有明显的正协同性。两个突变体也结合四个钙离子,但亲和力高于野生型S100A2且具有负协同性。前两个钙离子与N突变体的结合亲和力比野生型S100A2高100倍,后两个钙离子的亲和力增加了2倍。NC突变体的相应结合步骤的亲和力进一步增加了2 - 3倍。Hummel-Dryer方法表明,野生型和突变体每个二聚体结合四个锌离子,亲和力相似。荧光和差示分光光度法表明,钙离子和锌离子的结合会引起相当大的构象变化,这主要归因于位于位点II的Tyr76微环境的变化。4,4'-二苯胺基-1,1'-联萘-5,5'-二磺酸的荧光增强清楚地表明,钙离子和锌离子的结合在野生型S100A2表面诱导出一个疏水斑块,这与钙调蛋白一样,可能有助于S100A2在细胞核中的调节作用。

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