首页> 外文期刊>Journal of Molecular Biology >MOLECULAR DYNAMICS SIMULATIONS OF PROTEIN UNFOLDING AND LIMITED REFOLDING - CHARACTERIZATION OF PARTIALLY UNFOLDED STATES OF UBIQUITIN IN 60-PERCENT METHANOL AND IN WATER
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MOLECULAR DYNAMICS SIMULATIONS OF PROTEIN UNFOLDING AND LIMITED REFOLDING - CHARACTERIZATION OF PARTIALLY UNFOLDED STATES OF UBIQUITIN IN 60-PERCENT METHANOL AND IN WATER

机译:蛋白质展开和有限重折叠的分子动力学模拟-泛醇在60%甲醇和水中的部分折叠态的表征。

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Extensive experimental data are available on the native, partially and fully unfolded states of ubiquitin. Two and three-dimensional NMR experiments of a partially unfolded form of the protein in 60% methanol indicate that approximately one-half of the molecule contains disrupted but native-like structure while the other half is unstructured and/or contains non-native structure. In contrast, the interpretation of hydrogen-exchange data have led to the conclusion that this state is native-like. Thus, there are discrepancies between the experimental studies, or interpretations based on the data. We compare the results of molecular dynamics simulations, under varying conditions, with the experimental results. The simulations extend past 0.5 ns and include explicit solvent molecules: either pure water or 60% methanol. To begin with, ubiquitin was thermally denatured in water (at 498 K). Two particular structures, or ''aliquots'', during the unfolding process were selected for further study (60 and 198 ps). These structures were then simulated separately in water and 60% methanol at a lower and experimentally meaningful temperature (335 K). The conformations generated from the structure extracted later in the simulation contained significant amounts of non-native structure in the presence of methanol while satisfying both the NMR and hydrogen exchange data. Tn fact, clearly non-native regions of the structure yielded the desired protection from hydrogen exchange. In contrast, an earlier, more native-like, intermediate did not do as well at predicting the hydrogen-exchange behavior and was inconsistent with the NMR data. These data suggest that the results and interpretations using the different experimental techniques can be reconciled by a single state. This finding also brings into question the practice of interpreting protection to hydrogen exchange in terms of native secondary and tertiary structure, especially when one has weak patterns and low protection factors. When the partially unfolded states were placed in pure water, the protein collapsed and began to refold. Therefore, the desired solvent-dependent properties were observed: the partially unfolded conformations with increased exposure of hydrophobic residues remained expanded in methanol but collapsed in water as the non-polar groups minimized their exposure to solvent. [References: 73]
机译:关于泛素的天然,部分和完全展开状态,可以获得大量的实验数据。蛋白质在60%甲醇中部分展开形式的二维和三维NMR实验表明,大约一半的分子包含被破坏但天然的结构,而另一半则是非结构化的和/或包含非天然结构。相反,对氢交换数据的解释得出这样的结论,即该状态是天然的。因此,实验研究之间或基于数据的解释之间存在差异。我们将在不同条件下的分子动力学模拟结果与实验结果进行比较。模拟持续超过0.5 ns,包括显式溶剂分子:纯水或60%甲醇。首先,将泛素在水中热变性(在498 K下)。在展开过程中选择了两个特殊的结构或“等分试样”进行进一步研究(60和198 ps)。然后分别在较低温度和实验意义下的温度(335 K)下在水和60%甲醇中分别模拟这些结构。从稍后在模拟中提取的结构生成的构象在甲醇存在下包含大量的非天然结构,同时满足NMR和氢交换数据。实际上,显然该结构的非天然区域产生了所需的氢交换保护。相反,较早的,更像天然的中间体在预测氢交换行为方面表现不佳,并且与NMR数据不一致。这些数据表明,使用不同的实验技术得到的结果和解释可以通过单一状态进行核对。这一发现也使人们对用天然的二级和三级结构解释对氢交换的保护的做法提出了质疑,特别是当模式较弱且保护因子较低时。当部分展开的状态置于纯净水中时,蛋白质崩溃并开始重新折叠。因此,观察到所需的溶剂依赖性性质:随着疏水残基的暴露增加,部分展开的构象在甲醇中保持膨胀,但在水中塌陷,因为非极性基团使它们对溶剂的暴露最小化。 [参考:73]

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