Institute for Biological Instrumentation of the Russian Academy of Sciences, Pushchino, Moscow region, 142290, Russia.
Institute for Biological Instrumentation of the Russian Academy of Sciences, Pushchino, Moscow region, 142290, Russia.
Cell Calcium. 2017 Nov;67:53-64. doi: 10.1016/j.ceca.2017.08.011. Epub 2017 Sep 7.
Parvalbumin (PA) is a classical EF-hand calcium-binding protein of muscle, neuronal, and other tissues, and a major fish allergen. Although certain apo-PAs lack tertiary structure, functional implications of that feature and its structural prerequisites remain unclear. In a search for unstable PAs, we probed conformational stability of parvalbumin β-1 from coho salmon (csPA), a cold water fish species, using circular dichroism, scanning calorimetry, hydrophobic probe fluorescence, limited proteolysis, chemical crosslinking and dynamic light scattering techniques. Apo-csPA is shown to be mainly monomeric protein with markedly disorganized secondary structure and lack of rigid tertiary structure. Examination of per-residue propensity for intrinsic disorder in the PA groups with either folded or unfolded apo-form using the average PONDR VSL2P profiles revealed that the N-terminal region that includes α-helix A, AB-loop and N-terminal half of α-helix B is predicted to be less ordered in PAs with disordered apo-state. Application of the structural criteria developed for discrimination of disordered PAs indicate that the latter comprise about 16-19% of all PAs. We show that structural instability of apo-β-PA serves as a hallmark of elevated calcium affinity of the protein. Therefore, the successful predictions of unstable apo-PAs might facilitate search for PAs with maximal calcium affinity and possibly serving as calcium sensors.
副肌球蛋白(PA)是肌肉、神经元和其他组织中的一种经典 EF 手钙结合蛋白,也是一种主要的鱼类过敏原。虽然某些去辅基 PA 缺乏三级结构,但该特征的功能意义及其结构前提仍不清楚。在寻找不稳定的 PA 时,我们使用圆二色性、扫描量热法、疏水性探针荧光、有限蛋白酶解、化学交联和动态光散射技术探测来自冷水鱼虹鳟鱼(csPA)的副肌球蛋白 β-1 的构象稳定性。结果表明,apo-csPA 主要是单体蛋白,其二级结构明显紊乱,缺乏刚性的三级结构。使用 PONDR VSL2P 平均图谱检查具有折叠或未折叠 apo 形式的 PA 组中每个残基的固有无序倾向,结果表明,包含 A 螺旋 A、AB 环和 B 螺旋 N 端一半的 N 端区域在具有无序 apo 状态的 PA 中预测为无序程度较低。用于区分无序 PA 的结构标准的应用表明,后者约占所有 PA 的 16-19%。我们表明,apo-β-PA 的结构不稳定性是该蛋白钙亲和力升高的标志。因此,对不稳定 apo-PA 的成功预测可能有助于寻找具有最大钙亲和力并可能作为钙传感器的 PA。