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Conformational evolution of ubiquitin ions in electrospray mass spectrometry: molecular dynamics simulations at gradually increasing temperatures

机译:电喷雾质谱中泛素离子的构象演变:温度逐渐升高的分子动力学模拟

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摘要

Evidence from cross section data indicates that ubiquitin +13 ions lose their secondary and tertiary structure in mass spectrometric experiments. These transitions from the folded state into the near linear final structure occur at the experimental temperatures on time scales that are far too long for conventional molecular dynamics simulations. In this study, an approach to mass spectrometric unfolding processes is developed and a detailed application to an ubiquitin +13 ion system is presented. The approach involves a sequence of molecular dynamics simulations at gradually increasing temperatures leading to identification of major intermediate states, and the unfolding pathway. The unfolding rate at any temperature can then be calculated by a Rice-Ramsperger-Kassel (RRK) approach. For ubiquitin +13, three interesting intermediate states were found and the final near linear geometry was computed. The several relevant energy barriers calculated for the process are in the range of 7 to 15 kcal mol~(-1). The unfolding time scale at 300 K was computed to be 2 ms. Cross section calculations using a hard sphere scattering model were carried out for the final structure and found to be in good accord with the results of electrospray experiments supporting the theoretical model used. The approach employed here should be applicable to any other solvent-free protein system.
机译:横截面数据的证据表明,在质谱实验中,泛素+13离子失去了二级和三级结构。这些从折叠状态到接近线性最终结构的转变发生在实验温度下的时间尺度上,而时间尺度对于传统的分子动力学模拟来说太长了。在这项研究中,开发了一种质谱展开过程的方法,并提出了在泛素+13离子系统中的详细应用。该方法涉及在逐渐升高的温度下进行的分子动力学模拟序列,从而识别出主要的中间状态和展开途径。然后可以通过Rice-Ramsperger-Kassel(RRK)方法来计算在任何温度下的展开速度。对于泛素+13,发现了三个有趣的中间状态,并计算了最终的近线性几何形状。该过程计算出的几个相关能垒在7至15 kcal mol〜(-1)的范围内。计算出300 K的展开时间标度为2 ms。使用硬球散射模型对最终结构进行了截面计算,结果与支持理论模型的电喷雾实验结果非常吻合。此处采用的方法应适用于任何其他无溶剂的蛋白质系统。

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