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蛋白质的强制展开机制。

Mechanics of forced unfolding of proteins.

作者信息

Su Tianxiang, Purohit Prashant K

机构信息

Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, 19104, USA.

出版信息

Acta Biomater. 2009 Jul;5(6):1855-63. doi: 10.1016/j.actbio.2009.01.038. Epub 2009 Feb 3.

Abstract

We describe and solve a two-state kinetic model for the forced unfolding of proteins. The protein oligomer is modeled as a heterogeneous, freely jointed chain with two possible values of Kuhn length and contour length representing its folded and unfolded configurations. We obtain analytical solutions for the force-extension response of the protein oligomer for different types of loading conditions. We fit the analytical solutions for constant-velocity pulling to the force-extension data for ubiquitin and fibrinogen and obtain model parameters, such as Kuhn lengths and kinetic coefficients, for both proteins. We then predict their response under a linearly increasing force and find that our solutions for ubiquitin are consistent with a different set of experiments. Our calculations suggest that the refolding rate of proteins at low forces is several orders larger than the unfolding rate, and neglecting it can lead to lower predictions for the unfolding force, especially at high stretching velocities. By accounting for the refolding of proteins we obtain a critical force below which equilibrium is biased in favor of the folded state. Our calculations also suggest new methods to determine the distance of the transition state from the energy wells representing the folded and unfolded states of a protein.

摘要

我们描述并求解了一个用于蛋白质强制展开的双态动力学模型。蛋白质寡聚体被建模为一个异质的、自由连接的链,其具有两种可能的库恩长度和轮廓长度值,分别代表其折叠和未折叠的构象。我们针对不同类型的加载条件,获得了蛋白质寡聚体的力-伸长响应的解析解。我们将恒速拉伸的解析解与泛素和纤维蛋白原的力-伸长数据进行拟合,得到了这两种蛋白质的模型参数,如库恩长度和动力学系数。然后我们预测了它们在力线性增加时的响应,发现我们对泛素的解与另一组实验结果一致。我们的计算表明,低力下蛋白质的重折叠速率比展开速率大几个数量级,忽略重折叠会导致对展开力的预测值较低,尤其是在高拉伸速度下。通过考虑蛋白质的重折叠,我们得到了一个临界力,低于该临界力时,平衡偏向于折叠状态。我们的计算还提出了新的方法来确定过渡态与代表蛋白质折叠和未折叠状态的能量阱之间的距离。

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