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全面分析“黑”和“灰”团簇在大鼠β-小清蛋白结构和功能中的作用。

Comprehensive analysis of the roles of 'black' and 'gray' clusters in structure and function of rat β-parvalbumin.

机构信息

Institute for Biological Instrumentation of the Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia; Department of Biomedical Engineering, Pushchino State Institute of Natural Sciences, Pushchino, Moscow Region, 142290, Russia.

Institute for Biological Instrumentation of the Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia.

出版信息

Cell Calcium. 2018 Nov;75:64-78. doi: 10.1016/j.ceca.2018.08.005. Epub 2018 Aug 27.

Abstract

Recently we found two highly conserved structural motifs in the proteins of the EF-hand calcium binding protein family. These motifs provide a supporting scaffold for the Ca binding loops and contribute to the hydrophobic core of the EF-hand domain. Each structural motif forms a cluster of three amino acids called cluster I ('black' cluster) and cluster II ('grey' cluster). Cluster I is much more conserved and mostly incorporates aromatic amino acids. In contrast, cluster II includes a mix of aromatic, hydrophobic, and polar amino acids. The 'black' and 'gray' clusters in rat β-parvalbumin consist of F48, A100, F103 and G61, L64, M87, respectively. In the present work, we sequentially substituted these amino acids residues by Ala, except Ala100, which was substituted by Val. Physical properties of the mutants were studied by circular dichroism, scanning calorimetry, dynamic light scattering, chemical crosslinking, and fluorescent probe methods. The Ca and Mg binding affinities of these mutants were evaluated by intrinsic fluorescence and equilibrium dialysis methods. In spite of a rather complicated pattern of contributions of separate amino acid residues of the 'black' and 'gray' clusters into maintenance of rat β-parvalbumin structural and functional status, the alanine substitutions in the cluster I cause noticeably more pronounced changes in various structural parameters of proteins, such as hydrodynamic radius of apo-form, thermal stability of Ca/Mg-loaded forms, and total energy of Ca binding in comparison with the changes caused by amino acid substitutions in the cluster II. These findings were further supported by the outputs of computational analysis of the effects of these mutations on the intrinsic disorder predisposition of rat β-parvalbumin, which also indicated that local intrinsic disorder propensities and the overall levels of predicted disorder were strongly affected by mutations in the cluster I, whereas mutations in cluster II had less pronounced effects. These results demonstrate that amino acids of the cluster I provide more essential contribution to the maintenance of structuraland functional properties of the protein in comparison with the residues of the cluster II.

摘要

最近,我们在 EF 手钙离子结合蛋白家族的蛋白质中发现了两个高度保守的结构基序。这些基序为 Ca 结合环提供了一个支撑骨架,并有助于 EF 手结构域的疏水性核心。每个结构基序形成一个由三个氨基酸组成的簇,称为簇 I(“黑色”簇)和簇 II(“灰色”簇)。簇 I 更为保守,主要包含芳香族氨基酸。相比之下,簇 II 包含了芳香族、疏水性和极性氨基酸的混合。大鼠 β-副肌球蛋白中的“黑色”和“灰色”簇分别由 F48、A100、F103 和 G61、L64、M87 组成。在本工作中,我们依次用 Ala 取代这些氨基酸残基,除了 Ala100 被 Val 取代。通过圆二色性、扫描量热法、动态光散射、化学交联和荧光探针方法研究了突变体的物理性质。通过内源荧光和平衡透析方法评估了这些突变体的 Ca 和 Mg 结合亲和力。尽管“黑色”和“灰色”簇中单独氨基酸残基对维持大鼠β-副肌球蛋白结构和功能状态的贡献模式相当复杂,但簇 I 中的丙氨酸取代会导致蛋白质的各种结构参数发生明显更显著的变化,例如 apo 形式的水动力半径、Ca/Mg 负载形式的热稳定性以及 Ca 结合的总能量,与簇 II 中的氨基酸取代引起的变化相比。这些发现进一步得到了计算分析这些突变对大鼠β-副肌球蛋白固有无序倾向影响的支持,该分析还表明,局部固有无序倾向和预测无序的总体水平受到簇 I 突变的强烈影响,而簇 II 中的突变则影响较小。这些结果表明,与簇 II 的残基相比,簇 I 的氨基酸对维持蛋白质的结构和功能特性提供了更重要的贡献。

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