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首页> 外文期刊>Journal of Molecular Biology >Equilibrium phi-analysis of a molten globule: the 1-149 apoflavodoxin fragment.
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Equilibrium phi-analysis of a molten globule: the 1-149 apoflavodoxin fragment.

机译:熔融小球的平衡phi分析:1-149脱辅基黄素毒素片段。

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The apoflavodoxin fragment comprising residues 1-149 that can be obtained by chemical cleavage of the C-terminal alpha-helix of the full-length protein is known to populate a molten globule conformation that displays a cooperative behaviour and experiences two-state urea and thermal denaturation. Here, we have used a recombinant form of this fragment to investigate molten globule energetics and to derive structural information by equilibrium Phi-analysis. We have characterized 15 mutant fragments designed to probe the persistence of native interactions in the molten globule and compared their conformational stability to that of the equivalent full-length apoflavodoxin mutants. According to our data, most of the mutations analysed modify the stability of the molten globule fragment following the trend observed when the same mutations are implemented in the full-length protein. However, the changes in stability observed in the molten globule are much smaller and the Phi-values calculated are (with a single exception) below 0.4. This is consistent with an overall and significant debilitation of the native structure. Nevertheless, the fact that the molten globule fragment can be stabilised using as a guide the native structure of the full-length protein (by increasing helix propensity, optimising charge interactions and filling small cavities) suggests that the overall structure of the molten globule is still quite close to native, in spite of the lowered stability observed.
机译:已知可以通过化学裂解全长蛋白质的C端α-螺旋获得的包含残基1-149的载脂蛋白毒素片段填充了熔融小球构象,该构象表现出协同行为并经历了尿素和热的两态变性。在这里,我们已使用此片段的重组形式来研究熔融的球状高能,并通过平衡Phi分析得出结构信息。我们已经表征了15个突变片段,旨在检测熔融小球中天然相互作用的持续性,并将它们的构象稳定性与等效的全长载脂蛋白还原酶突变体进行比较。根据我们的数据,当在全长蛋白中实施相同的突变时,遵循观察到的趋势,分析的大多数突变都会改变熔融小球片段的稳定性。但是,在熔融小球中观察到的稳定性变化要小得多,并且计算的Phi值(只有一个例外)低于0.4。这与天然结构的整体和显着衰弱相一致。但是,可以使用全长蛋白质的天然结构作为指导来稳定熔融小球片段(通过增加螺旋倾向,优化​​电荷相互作用并填充小孔),这一事实表明,熔融小球的总体结构仍在尽管观察到稳定性降低,但非常接近天然。

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