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In search for globally disordered apo-parvalbumins: Case of parvalbumin β-1 from coho salmon

机译:在寻找全局紊乱的apo-parvalbumins:来自Coho Salmon的Parvalbuminβ-1的情况

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Graphical abstract Display Omitted Highlights ? Parvalbumins (PAs) are calcium-binding proteins that are major fish allergens. ? Allergenicity of PAs is favored by high structural stability of their calcium forms. ? Conformational stability of apo-PAs affects metal affinity of these proteins. ? A set of rules for prediction of apo-PA stability is elaborated. ? It can be used in search for hypoallergenic PAs needed for immunotherapy of fish allergy. Abstract 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.
机译:图形抽象显示省略了亮点? Parvalbumins(PAS)是主要鱼过敏原的钙结合蛋白。还通过其钙形式的高结构稳定性,PAS的过敏性是有利于。还APO-PA的构象稳定性影响这些蛋白质的金属亲和力。还详细阐述了一组预测APO-PA稳定性的规则。还它可以用于寻找鱼过敏的免疫疗法所需的低过敏性PAS。摘要Parvalbumin(PA)是肌肉,神经元和其他组织的经典EF手钙结合蛋白,以及主要的鱼过敏原。虽然某些APO-PAS缺乏三级结构,但该特征的功能含义及其结构先决条件仍然不清楚。在寻求不稳定的PAS中,我们使用圆形二色性,扫描量热法,疏水性探针荧光,有限蛋白水解,化学交联和动态光散射技术概述了来自Coho Salmon(CSPA)的构象稳定性。 。 APO-CSPA被显示为主要是单体蛋白质,具有显着的副型二次结构和缺乏刚性三级结构。检查PA组中固有疾病的每残留倾向,使用平均POLER折叠或展开的APO-形式进行VSL2P配置文件显示,包括α-Helix A,AB-Loop和N末端半部的N末端区域预测,在具有无序的APO状态下的PAS中较少。用于辨别无序PAS的结构标准的应用表明后者包含约16-19%的PAS。我们表明APO-β-PA的结构不稳定性是蛋白质钙亲和力升高的标志。因此,不稳定APO-PA的成功预测可能有助于搜索具有最大钙亲和力的PA,并且可能用作钙传感器。

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