Smith S P, Barber K R, Dunn S D, Shaw G S
Department of Biochemistry, University of Western Ontario, London, Canada.
Biochemistry. 1996 Jul 9;35(27):8805-14. doi: 10.1021/bi952698c.
The dimeric calcium-binding protein S100b is proposed to undergo a calcium-induced structural change allowing it to interact, via a hydrophobic surface, with other proteins. Previously it has been suggested that calcium binding to S100b leads to the exposure of at least one phenylalanine residue (Mani et al., 1982, 1983). This effect appears to be "reversed" at higher ionic strength, leading to a possible reburying of phenylalanine residues (Mani et al., 1982, 1983). To study these effects, we monitored calcium binding to recombinant human S100b by NMR spectroscopy under different salt (KCI) conditions. 15N-Labeled glycine residues in S100b showed calcium-induced chemical shift changes similar to those reported for the related monomeric protein calbindin D9k, suggesting similar conformational changes are occurring in the calcium-binding loops of these two proteins. Calcium binding to S100b also resulted in a shifting and broadening of several 1H resonances from the Ca-S100b form only including those from the side chains of residues F14, F70, and F73 but not those of residue Y17. This broadening was enhanced with increased ionic strength (KCI). However, small additions ( < 15% v/v) of the hydrophobic solvent trifluoroethanol relieved this phenomenon, leading to narrower line widths. These observations are consistent with the calcium-induced exposure of at least one of these hydrophobic residues, resulting in self-association of the S100b dimer. Trifluoroethanol serves to dissociate these complexes back to the dimeric calcium species. We propose that this cluster of hydrophobic residues which include F14, F73, and F88 may be important for interactions with a target protein.
二聚体钙结合蛋白S100b被认为会发生钙诱导的结构变化,使其能够通过疏水表面与其他蛋白质相互作用。此前有人提出,钙与S100b的结合会导致至少一个苯丙氨酸残基暴露(马尼等人,1982年、1983年)。在较高离子强度下,这种效应似乎会“逆转”,导致苯丙氨酸残基可能重新被掩埋(马尼等人,1982年、1983年)。为了研究这些效应,我们通过核磁共振光谱在不同盐(KCl)条件下监测钙与重组人S100b的结合。S100b中15N标记的甘氨酸残基显示出钙诱导的化学位移变化,与相关单体蛋白钙结合蛋白D9k报道的变化相似,表明这两种蛋白质的钙结合环中发生了类似的构象变化。钙与S100b的结合还导致仅来自Ca-S100b形式的几个1H共振发生位移和展宽,这些共振仅包括来自残基F14、F70和F73侧链的共振,而不包括残基Y17的共振。随着离子强度(KCl)的增加,这种展宽增强。然而,少量添加(<15% v/v)的疏水溶剂三氟乙醇可缓解这种现象,导致线宽变窄。这些观察结果与这些疏水残基中至少一个的钙诱导暴露一致,从而导致S100b二聚体的自缔合。三氟乙醇有助于将这些复合物解离回二聚体钙物种。我们提出,包括F14、F73和F88在内的这簇疏水残基可能对与靶蛋白的相互作用很重要。