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An analytical study of the interplay between geometrical and energetic effects in protein folding

机译:蛋白质折叠中几何效应和能量效应之间相互作用的分析研究

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Analytical studies have several advantages for an understanding of the mechanisms of protein folding such as the interplay between geometrical and energetic effects. In this paper, we introduce a Gaussian filament with a C-alpha structure-based (G (o) over bar) potential as a new theoretical scheme based on a Hamiltonian approach. This model takes into account geometrical information in a realistic fashion without the need of phenomenological descriptions. In order to make this model more appropriate for comparison with protein folding simulations and experiments, we introduce a many-body interaction into the potential term to enhance cooperativity. We apply our new analytical model to a beta-hairpin-type peptide and compare our results with a molecular dynamics simulation of a structure-based model. (c) 2008 American Institute of Physics.
机译:对于理解蛋白质折叠的机制(例如几何效应和能量效应之间的相互作用),分析研究具有多个优势。在本文中,我们介绍了一种基于C-alpha结构的高斯灯丝(基于bar的G(o)),这是一种基于哈密顿方法的新理论方案。该模型以逼真的方式考虑了几何信息,而无需现象学描述。为了使该模型更适合与蛋白质折叠模拟和实验进行比较,我们将多体相互作用引入潜在的术语中以增强协同性。我们将我们的新分析模型应用于β-发夹型肽,并将我们的结果与基于结构的模型的分子动力学模拟进行比较。 (c)2008年美国物理研究所。

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