Frank-Kamenetskii M D, Chogovadze G I
Institute of Molecular Genetics, USSR Academy of Sciences, Moscow.
J Biomol Struct Dyn. 1984 Jun;1(6):1517-23. doi: 10.1080/07391102.1984.10507535.
This is a theoretical study of a situation where each residue of a linear biopolymer may adopt one of three conformational states. Such a situation exists in the case of DNA, since it may be in helical A, B, . . ., Z forms as well as the melted state. In the vicinity of the triple point in the phrase diagram three states, e.g. the A form, the B form and the denatured state, co-exist within a given molecule. We present an exact analytical solution of the simplest homopolymer model. Theory predicts that the presence of two helical states in one molecule should affect the helix-coil transition in two ways. The melting temperature experiences an upward shift and the melting range width is increased, by a factor of square root of two as a maximum.
这是一项关于线性生物聚合物的每个残基可能采用三种构象状态之一的情况的理论研究。DNA就存在这样的情况,因为它可能处于螺旋A、B……、Z形式以及解链状态。在相图的三相点附近,三种状态,例如A形式、B形式和变性状态,在给定分子中共存。我们给出了最简单的均聚物模型的精确解析解。理论预测,一个分子中两种螺旋状态的存在应以两种方式影响螺旋-线圈转变。解链温度会向上偏移,解链范围宽度会增加,最大增加到两倍的平方根。