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首页> 外文期刊>Chembiochem: A European journal of chemical biology >The role played by the cc-helix in the unfolding pathway and stability of azurin: Switching between hierarchic and nonhierarchic folding
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The role played by the cc-helix in the unfolding pathway and stability of azurin: Switching between hierarchic and nonhierarchic folding

机译:cc螺旋在天青蛋白的展开途径和稳定性中发挥的作用:在分层折叠和非分层折叠之间切换

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摘要

The role played by the a-helix in determining the structure, the stability and the unfolding mechanism of azurin was addressed by studying a helix-depleted azurin variant produced by site-directed mutagenesis. The protein structure was investigated by CD, 1D (HNMR)-H-1, fluorescence spectroscopy measurements and MD simulations, whilst EPR, UV-visible and cyclic voltammetry experiments were carried out to investigate the geometry and the properties of the Cu-II site. The effects of the a-helix depletion on the thermal stability and the unfolding pathway of the protein were determined by DSC, UV/visible and fluorescence measurements at increasing temperature. The results show that, in the absence of the a-helix segment, the overall protein structure is maintained, and that only the Cu site is slightly modified. In contrast, the protein stability is diminished by about 60% with respect to the wild-type azurin. Moreover, the unfolding pathway of the mutant azurin involves the presence of detectable intermediates. In comparison with previous studies concerning other small beta-sheet cupredoxins, the results as a whole support the hypothesis that the presence of the a-helix can switch the folding of azurin from a hierarchic to a nonhierarchic mechanism in which the highly conserved beta-sheet core provides a scaffold for cooperative folding of the wild-type protein.
机译:通过研究定点诱变产生的螺旋缺失的天青蛋白变体,可以解决α-螺旋在确定天青蛋白的结构,稳定性和解折叠机理中所起的作用。通过CD,1D(HNMR)-H-1,荧光光谱测量和MD模拟研究了蛋白质结构,同时进行了EPR,UV-可见和循环伏安法实验以研究Cu-II位点的几何形状和性质。 。通过DSC,在升高的温度下的UV /可见光和荧光测量来确定α-螺旋耗尽对蛋白质的热稳定性和解折叠途径的影响。结果表明,在不存在α-螺旋区段的情况下,总体蛋白质结构得以维持,并且仅Cu位点被轻微修饰。相反,相对于野生型天青蛋白,蛋白质稳定性降低了约60%。此外,突变的天青蛋白的展开途径涉及可检测的中间体的存在。与先前有关其他小β-折叠铜氧还蛋白的研究相比,该结果总体上支持以下假设:α-螺旋的存在可将天青蛋白的折叠从高度保守的β-折叠的分层机制切换为非分层机制。核心提供了用于野生型蛋白的协同折叠的支架。

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