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钙结合蛋白S100B解折叠途径中二聚体中间体的鉴定。

Identification of a dimeric intermediate in the unfolding pathway for the calcium-binding protein S100B.

作者信息

Shaw Gary S, Marlatt Nicole M, Ferguson Peter L, Barber Kathryn R, Bottomley Stephen P

机构信息

Department of Biochemistry, The University of Western Ontario, London, Ontario, Canada N6A 5C1.

出版信息

J Mol Biol. 2008 Oct 17;382(4):1075-88. doi: 10.1016/j.jmb.2008.07.083. Epub 2008 Aug 6.

Abstract

The S100 proteins comprise 25 calcium-signalling members of the EF-hand protein family. Unlike typical EF-hand signalling proteins such as calmodulin and troponin-C, the S100 proteins are dimeric, forming both homo- and heterodimers in vivo. One member of this family, S100B, is a homodimeric protein shown to control the assembly of several cytoskeletal proteins and regulate phosphorylation events in a calcium-sensitive manner. Calcium binding to S100B causes a conformational change involving movement of helix III in the second calcium-binding site (EF2) that exposes a hydrophobic surface enabling interactions with other proteins such as tubulin and Ndr kinase. In several S100 proteins, calcium binding also stabilizes dimerization compared to the calcium-free states. In this work, we have examined the guanidine hydrochloride (GuHCl)-induced unfolding of dimeric calcium-free S100B. A series of tryptophan substitutions near the dimer interface and the EF2 calcium-binding site were studied by fluorescence spectroscopy and showed biphasic unfolding curves. The presence of a plateau near 1.5 M GuHCl showed the presence of an intermediate that had a greater exposed hydrophobic surface area compared to the native dimer based on increased 4,4-dianilino-1,1'-binaphthyl-5,5'-disulfonic acid fluorescence. Furthermore, (1)H-(15)N heteronuclear single quantum coherence analyses as a function of GuHCl showed significant chemical shift changes in regions near the EF1 calcium-binding loop and between the linker and C-terminus of helix IV. Together these observations show that calcium-free S100B unfolds via a dimeric intermediate.

摘要

S100蛋白包含EF手型蛋白家族的25个钙信号成员。与典型的EF手型信号蛋白如钙调蛋白和肌钙蛋白C不同,S100蛋白是二聚体,在体内形成同二聚体和异二聚体。该家族的一个成员S100B是一种同二聚体蛋白,已证明它可控制几种细胞骨架蛋白的组装,并以钙敏感的方式调节磷酸化事件。钙与S100B结合会导致构象变化,涉及第二个钙结合位点(EF2)中螺旋III的移动,从而暴露出一个疏水表面,使其能够与其他蛋白如微管蛋白和Ndr激酶相互作用。在几种S100蛋白中,与无钙状态相比,钙结合还能稳定二聚化。在这项研究中,我们研究了盐酸胍(GuHCl)诱导的无钙二聚体S100B的去折叠。通过荧光光谱研究了二聚体界面和EF2钙结合位点附近的一系列色氨酸取代,结果显示出双相去折叠曲线。在1.5 M GuHCl附近出现的平台表明存在一种中间体,基于4,4-二苯胺基-1,1'-联萘-5,5'-二磺酸荧光增强,该中间体比天然二聚体具有更大的暴露疏水表面积。此外,作为GuHCl函数的(1)H-(15)N异核单量子相干分析显示,在EF1钙结合环附近以及螺旋IV的连接子和C末端之间的区域有显著的化学位移变化。这些观察结果共同表明,无钙的S100B通过二聚体中间体去折叠。

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