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Thermodynamics and stability of a beta-sheet complex: molecular dynamics simulations on simplified off-lattice protein models.

机译:β-sheet复合物的热力学和稳定性:简化的非晶格蛋白质模型的分子动力学模拟。

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摘要

We have performed discontinuous molecular dynamics simulations of the thermodynamics and stability of a tetrameric beta-sheet complex that contains four identical four-stranded antiparallel beta-sheet peptides. The potential used in the simulation is a hybrid Go-type potential characterized by the bias gap parameter g, an artificial measure of the preference of a model protein for its native state, and the intermolecular contact parameter eta, which measures the ratio of intermolecular to intramolecular native attractions. Despite the simplicity of the model, a complex set of thermodynamic transitions for the beta-sheet complex is revealed that shows there are three distinct oligomer (partially ordered, ordered, and highly ordered beta-sheet complex) states and four noninteracting monomers phases. The thermodynamic properties of the three oligomer states strongly depend on both the size of the intermolecular contact parameter eta and the temperature. The partially ordered beta-sheet complex is made up of four ordered globules and is observed at intermediate to large eta at high temperatures. The ordered beta-sheet complex contains four native beta-sheets and is located at small to intermediate eta at low temperatures in the phase diagram. The highly ordered beta-sheet complex has fully-stiff beta-sheet strands, the same as the global energy minimum structure, and is observed for all eta at low temperatures.
机译:我们已经进行了不连续的分子动力学模拟,对包含四个相同的四链反平行β-折叠肽的四聚体β-折叠复合物的热力学和稳定性进行了模拟。在模拟中使用的电势是混合Go型电势,其特征是偏置间隙参数g,模型蛋白质对其原始状态的偏好的人工测量以及分子间接触参数eta,分子间接触参数eta测量分子间与分子间的比率分子内的自然景点。尽管模型简单,但揭示了一组复杂的β-折叠复合物热力学转变,表明存在三种不同的低聚物(部分有序,有序和高度有序的β-折叠复合物)状态和四个非相互作用单体相。三种低聚物状态的热力学性质强烈取决于分子间接触参数η的大小和温度。部分有序的β-折叠复合物由四个有序的小球组成,并在高温下从中等到大η观察到。有序的β-折叠复合物包含四个天然β-折叠,在相图中处于低温时处于小到中等η。高度有序的β-折叠复合物具有完全刚性的β-折叠链,与整体能量最小结构相同,并且在低温下可观察到所有eta。

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