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钙结合蛋白D9k中的疏水核心取代:对Ca2+结合和解离的影响。

Hydrophobic core substitutions in calbindin D9k: effects on Ca2+ binding and dissociation.

作者信息

Kragelund B B, Jönsson M, Bifulco G, Chazin W J, Nilsson H, Finn B E, Linse S

机构信息

Physical Chemistry 2, Lund University, Chemical Centre, Sweden.

出版信息

Biochemistry. 1998 Jun 23;37(25):8926-37. doi: 10.1021/bi9726436.

Abstract

Hydrophobic core residues have a marked influence on the Ca2+-binding properties of calbindin D9k, even though there are no direct contacts between these residues and the bound Ca2+ ions. Eleven different mutants with substitutions in the hydrophobic core were produced, and their equilibrium Ca2+-binding constants measured from Ca2+ titrations in the presence of chromophoric chelators. The Ca2+-dissociation rate constants were estimated from Ca2+ titrations followed by 1H NMR1 and were measured more accurately using stopped-flow fluorescence. The parameters were measured at four KCl concentrations to assess the salt dependence of the perturbations. The high similarity between the NMR spectra of mutants and wild-type calbindin D9k suggests that the structure is largely unperturbed by the substitutions. More detailed NMR investigations of the mutant in which Val61 is substituted by Ala showed that the mutation causes only very minimal perturbations in the immediate vicinity of residue 61. Substitutions of alanines or glycines for bulky residues in the center of the core were found to have significant effects on both Ca2+ affinity and dissociation rates. These substitutions caused a reduction in affinity and an increase in off-rate. Small effects, both increases and decreases, were observed for substitutions involving residues far from the Ca2+ sites and toward the outer part of the hydrophobic core. The mutant with the substitution Phe66 --> Trp behaved differently from all other mutants, and displayed a 25-fold increase in overall affinity of binding two Ca2+ ions and a 6-fold reduction in calcium dissociation rate. A strong correlation (R = 0.94) was found between the observed Ca2+-dissociation rates and affinities, as well as between the salt dependence of the off-rate and the distance to the nearest Ca2+-coordinating atom. There was also a strong correlation (R = 0.95) between the Ca2+ affinity and stability of the Ca2+ state and a correlation (R = 0. 69) between the Ca2+ affinity and stability of the apo state, as calculated from the results in the present and preceding paper in this issue [Julenius, K., Thulin, E., Linse, S., and Finn, B. E. (1998) Biochemistry 37, 8915-8925]. The change in salt dependencies of koff and cooperativity were most pronounced for residues completely buried in the core of the protein (solvent accessible surface area approximately 0). Altogether, the results suggest that the hydrophobic core residues promote Ca2+ binding both by contributing to the preformation of the Ca2+ sites in the apo state and by preferentially stabilizing the Ca2+-bound state.

摘要

疏水核心残基对钙结合蛋白D9k的Ca2+结合特性有显著影响,尽管这些残基与结合的Ca2+离子之间没有直接接触。构建了11种在疏水核心有取代的不同突变体,并通过在发色螯合剂存在下进行Ca2+滴定来测量它们的平衡Ca2+结合常数。Ca2+解离速率常数通过Ca2+滴定后进行1H NMR估算,并使用停流荧光法更精确地测量。在四种KCl浓度下测量这些参数,以评估扰动的盐依赖性。突变体与野生型钙结合蛋白D9k的NMR光谱高度相似,这表明结构在很大程度上未因取代而受到干扰。对Val61被Ala取代的突变体进行更详细的NMR研究表明,该突变仅在残基61附近引起非常微小的扰动。发现在核心中心用丙氨酸或甘氨酸取代大体积残基对Ca2+亲和力和解离速率都有显著影响。这些取代导致亲和力降低和解离速率增加。对于涉及远离Ca2+位点且朝向疏水核心外部的残基的取代,观察到了微小的影响,既有增加也有减少。Phe66→Trp取代的突变体表现与所有其他突变体不同,其结合两个Ca2+离子的总体亲和力增加了25倍,钙解离速率降低了6倍。观察到的Ca2+解离速率与亲和力之间,以及解离速率的盐依赖性与到最近的Ca2+配位原子的距离之间存在很强的相关性(R = 0.94)。根据本期及上一篇论文[Julenius, K., Thulin, E., Linse, S., and Finn, B. E. (1998) Biochemistry 37, 8915 - 892�]的结果计算得出,Ca2+亲和力与Ca2+状态的稳定性之间也存在很强的相关性(R = 0.95),而Ca2+亲和力与脱辅基状态的稳定性之间存在相关性(R = 0.69)。对于完全埋在蛋白质核心中的残基(溶剂可及表面积约为0),koff和协同性的盐依赖性变化最为明显。总之,结果表明疏水核心残基通过有助于脱辅基状态下Ca2+位点的预形成以及优先稳定Ca2+结合状态来促进Ca2+结合。

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