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钙和整合素结合蛋白的金属离子结合特性及构象状态

Metal ion binding properties and conformational states of calcium- and integrin-binding protein.

作者信息

Yamniuk Aaron P, Nguyen Leonard T, Hoang Tung T, Vogel Hans J

机构信息

Structural Biology Research Group, Department of Biological Sciences, University of Calgary, 2500 University Drive Northwest, Calgary, Alberta, Canada T2N 1N4.

出版信息

Biochemistry. 2004 Mar 9;43(9):2558-68. doi: 10.1021/bi035432b.

Abstract

Calcium- and integrin-binding protein (CIB) is a novel member of the helix-loop-helix family of regulatory calcium-binding proteins which likely has a specific function in hemostasis through its interaction with platelet integrin alphaIIbbeta(3). The significant amino acid sequence homology between CIB and other regulatory calcium-binding proteins such as calmodulin, calcineurin B, and recoverin suggests that CIB may undergo a calcium-induced conformational change; however, the mechanism of calcium binding and the details of a structural change have not yet been investigated. Consequently, we have performed a variety of spectroscopic and microcalorimetric studies of CIB to determine its calcium binding characteristics, and the subsequent conformational changes that occur. Furthermore, we provide the first evidence for magnesium binding to CIB and determine the structural consequences of this interaction. Our results indicate that in the absence of any bound metal ions, apo-CIB adopts a folded yet highly flexible molten globule-like structure. Both calcium and magnesium binding induce conformational changes which stabilize both the secondary and tertiary structure of CIB, resulting in considerable increases in the thermal stability of the proteins. CIB was found to bind two Ca(2+) ions in a sequential manner with dissociation constants (K(d)) near 0.54 and 1.9 microM for sites EF-4 and EF-3, respectively. In contrast, CIB bound only one Mg(2+) ion to EF-3 with a K(d) near 120 microM. Together, our results suggest that CIB may exist in multiple structural and metal ion-bound states in vivo which may play a role in its regulation of target proteins such as platelet integrin.

摘要

钙整合素结合蛋白(CIB)是调节性钙结合蛋白螺旋-环-螺旋家族的一个新成员,它可能通过与血小板整合素αIIbβ3相互作用在止血过程中发挥特定功能。CIB与其他调节性钙结合蛋白如钙调蛋白、钙调神经磷酸酶B和恢复蛋白之间显著的氨基酸序列同源性表明,CIB可能会发生钙诱导的构象变化;然而,钙结合机制和结构变化的细节尚未得到研究。因此,我们对CIB进行了各种光谱和微量量热研究,以确定其钙结合特性以及随后发生的构象变化。此外,我们首次提供了镁与CIB结合的证据,并确定了这种相互作用的结构后果。我们的结果表明,在没有任何结合金属离子的情况下,脱辅基CIB采用折叠但高度灵活的类熔球结构。钙和镁的结合都会诱导构象变化,从而稳定CIB的二级和三级结构,导致蛋白质的热稳定性显著提高。发现CIB以顺序方式结合两个Ca2+离子,EF-4和EF-3位点的解离常数(Kd)分别接近0.54和1.9 microM。相比之下,CIB仅在EF-3位点结合一个Mg2+离子,Kd接近120 microM。总之,我们的结果表明,CIB在体内可能以多种结构和金属离子结合状态存在,这可能在其对血小板整合素等靶蛋白的调节中发挥作用。

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