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Crowding effects on the temperature and pressure dependent structure, stability and folding kinetics of Staphylococcal Nuclease

机译:拥挤对温度和压力依赖性葡萄球菌核酸酶的结构,稳定性和折叠动力学的影响

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FT-IR spectroscopic, small-angle X-ray scattering and calorimetric measurements have been applied to explore the effect of the macromolecular crowder agent Ficoll on the temperature-and pressure-dependent stability diagram and folding reaction of the protein Staphylococcal Nuclease (SNase). Additionally, we compare the experimental data with approximate theoretical predictions. We found that temperature-and pressure-induced equilibrium unfolding of SNase is markedly shifted to higher temperatures and pressures in 30 wt% Ficoll solutions. The structure of the unfolded state ensemble does not seem to be strongly influenced in the presence of the crowder. Self-crowding effects have been found to become important at SNase concentrations above 10 wt% only. Our kinetic results show that the folding rate of SNase decreases markedly in the presence of Ficoll. These results indicate that besides the commonly encountered excluded volume effect, other factors need to be considered when assessing confinement effects on protein folding kinetics. Among those, crowder-induced viscosity changes seem to be prominent.
机译:FT-IR光谱,小角度X射线散射和量热测量已被用于探索高分子拥挤剂Ficoll对温度和压力依赖性稳定性图和葡萄球菌核酸酶(SNase)折叠反应的影响。此外,我们将实验数据与近似理论预测值进行了比较。我们发现,在30 wt%的Ficoll溶液中,温度和压力引起的SNase平衡展开显着转移到较高的温度和压力。在拥挤者的存在下,未展开状态合奏的结构似乎没有受到很大影响。已经发现仅在SNase浓度高于10wt%时,自拥效应就变得重要。我们的动力学结果表明,在存在Ficoll的情况下,SNase的折叠速率显着降低。这些结果表明,除了通常遇到的排除体积效应外,在评估对蛋白质折叠动力学的限制效应时还需要考虑其他因素。其中,拥挤引起的粘度变化似乎是突出的。

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