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Statistical thermodynamics of helix-coil transitions in biopolymers

机译:生物聚合物中螺旋-螺旋转变的统计热力学

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Helical conformations, such as the alpha-helix in polypeptides and the double helix in DNA, are common structural elements in biopolymers. As the temperature is raised or the pH is changed to extremes of acidity or alkalinity, the helix becomes disordered into a random coil state. The helix-coil transition has been extensively studied, both experimentally and theoretically, as a model for conformational transitions in biopolymers and as a way to obtain information about the intermolecular forces which stabilize biopolymer structure. We develop three theoretical treatments that describe the helix-coil transition with increasing degrees of detail and rigor: the all-or-none model, the zipper model, which allows initiation of the helix only once along the polymer chain, and the matrix model, which places no restrictions on helix-coil junctions. The matrix model is mathematically similar to the familiar one-dimensional Ising model. (C) 1999 American Association of Physics Teachers. [References: 10]
机译:螺旋构象,例如多肽中的α-螺旋和DNA中的双螺旋,是生物聚合物中常见的结构元素。随着温度升高或pH值改变为极端的酸度或碱度,螺旋线会变成无规卷曲状态。螺旋-螺旋转变已经在实验和理论上进行了广泛的研究,作为生物聚合物中构象转变的模型以及获得有关稳定生物聚合物结构的分子间力的信息的方式。我们开发了三种理论方法来描述螺旋线圈过渡的细节和严密程度的提高:全或无模型,拉链模型(仅允许沿着聚合物链启动一次螺旋)和基质模型,这对螺旋线圈连接没有任何限制。矩阵模型在数学上类似于熟悉的一维伊辛模型。 (C)1999年美国物理教师协会。 [参考:10]

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