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Synchrotron SAXS Studies on the Structural Stability of Carcinus aestuarii Hemocyanin in Solution

机译:同步加速器SAXS研究溶液中马齿est血蓝蛋白的结构稳定性

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摘要

The effect of GuHCl and of NaCl on the structural properties of the hemocyanin (Hc) from Carcinus aestuarii has been studied by small angle x-ray scattering (SAXS) using synchrotron radiation. SAXS data collected as a function of perturbant concentration have been used to analyze conformational states of hexameric holo and apoHc as well as the holo and apoforms of the monomeric subunit CaeSS2. In the case of the holoprotein in GuHCl, two concentration domains were identified: at lower concentration, the perturbant induces aggregation of Hc molecules, whereas at higher concentration the aggregates dissociate with concomitant denaturation of the protein. In contrast, with apoHc the denaturation occurs at rather low GuHCl, pointing to an important effect of the active site bound copper for the stabilization of Hc tertiary structure. The effects of NaCl are similar to those of GuHCl as far as CaeSS2 is concerned, namely oligomerization precedes denaturation, whereas in the case of the hexameric form no aggregation occurs. To improve data analysis, on the basis of the current models for Hc monomers and oligomers, the fraction of each aggregation state and/or unfolded protein has been determined by fitting experimental SAXS curves with form factors calculated from Monte Carlo methods. In addition, a global analysis has been carried out on the basis of a thermodynamic model involving an equilibrium between a monomer in a nativelike and denatured form as well as a class of equilibria among the monomer and other aggregates.
机译:已经通过使用同步加速器辐射的小角度X射线散射(SAXS)研究了GuHCl和NaCl对海藻Carcinus aestuarii血蓝蛋白(Hc)结构特性的影响。根据扰动浓度收集的SAXS数据已用于分析六聚体holo和apoHc的构象状态,以及单体亚基CaeSS2的holo和apoforms。对于GuHCl中的完整蛋白,鉴定到两个浓度域:在较低浓度下,扰动物诱导Hc分子聚集,而在较高浓度下,聚集物解离并伴随蛋白质变性。相反,使用apoHc时,变性发生在相当低的GuHCl浓度下,这表明活性位点结合的铜对于稳定Hc三级结构具有重要作用。就CaeSS2而言,NaCl的作用与GuHCl的作用相似,即低聚作用先于变性作用,而在六聚体的情况下则不会发生聚集。为了改进数据分析,在目前的Hc单体和低聚物模型的基础上,通过将实验SAXS曲线与从Monte Carlo方法计算得到的形状因子进行拟合,确定了每种聚集状态和/或未折叠蛋白的比例。另外,已经基于热力学模型进行了整体分析,该模型涉及天然和变性形式的单体之间的平衡以及单体和其他聚集体之间的一类平衡。

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