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首页> 外文期刊>Biochemistry >Unfolding thermodynamics of Trp-cage, a 20 residue miniprotein, studied by differential scanning calorimetry and circular dichroism spectroscopy.
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Unfolding thermodynamics of Trp-cage, a 20 residue miniprotein, studied by differential scanning calorimetry and circular dichroism spectroscopy.

机译:通过差示扫描量热法和圆二色谱法研究了20个残基的小蛋白Trp笼的展开热力学。

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摘要

Small proteins provide convenient models for computational studies of protein folding and stability, which are usually compared with experimental data. Until recently, the unfolding of Trp-cage was considered to be a two-state process. However, no direct experimental evidence for this has been presented, and in some cases, the contrary has been suggested. To elucidate a detailed unfolding mechanism, we studied the thermodynamics of unfolding of Trp-cage by differential scanning calorimetry (DSC) and circular dichroism (CD) spectroscopy. The observation that at low temperatures only approximately 90-95% of Trp-cage exists in the native conformation presented an analytical challenge. Nevertheless, it was found that the DSC and CD data can be fitted simultaneously to the same set of thermodynamic parameters. The major uncertainty in such a global fit is the heat capacity change upon unfolding, DeltaCp. This can be circumvented by obtaining DeltaCp directly from the difference between heat capacity functions of the native and unfolded states. Using such an analysis it is shown that Trp-cage unfolding can be represented by a two-state model with the following thermodynamic parameters: Tm = 43.9 +/- 0.8 degrees C, DeltaH(Tm) = 56 +/- 2 kJ/mol, DeltaCp = 0.3 +/- 0.1 kJ/(mol.K). Using these thermodynamic parameters it is estimated that Trp-cage is marginally stable at 25 degrees C, DeltaG(25 degrees C) = 3.2 +/- 0.2 kJ/mol, which is only 30% more than the thermal fluctuation energy at this temperature.
机译:小蛋白质为蛋白质折叠和稳定性的计算研究提供了方便的模型,通常将它们与实验数据进行比较。直到最近,Trp-笼子的发展还被认为是两个状态的过程。但是,目前尚无直接的实验证据,在某些情况下,则提出相反的建议。为了阐明详细的展开机理,我们通过差示扫描量热法(DSC)和圆二色性(CD)光谱研究了Trp笼展开的热力学。天然构象在低温下仅存在约90-95%的Trp笼的观察提出了分析挑战。然而,发现可以同时将DSC和CD数据拟合到同一组热力学参数。这种全局拟合的主要不确定性是展开时的热容量变化DeltaCp。可以通过直接从原始状态和展开状态的热容量函数之间的差获取DeltaCp来避免这种情况。使用这种分析表明,可以用具有以下热力学参数的两态模型来表示Trp笼的展开:Tm = 43.9 +/- 0.8摄氏度,DeltaH(Tm)= 56 +/- 2 kJ / mol ,DeltaCp = 0.3 +/- 0.1kJ /(mol.K)。使用这些热力学参数,可以估计Trp笼在25摄氏度时略微稳定,DeltaG(25摄氏度)= 3.2 +/- 0.2 kJ / mol,仅比该温度下的热波动能量高30%。

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