Science. 1984 Nov 9;226(4675):647-50. doi: 10.1126/science.226.4675.647.
Conformational transitions in polymers involve large angle rotations about bonds. The process must proceed in a way that does not require gross movements of the macromolecules. The dynamics have been investigated by computer simulation and kinetic theory. The rate-determining step in the transition is found to occur in a mode which is kept local by distortion of nearby parts of the molecule. One especially important type of cooperativity, crank-like counterrotation of second-neighbor bonds, is identified. Experiments which provide evidence about the dynamics of conformational transitions are discussed.
聚合物中的构象转变涉及到键的大角度旋转。这个过程必须以不要求大分子大幅运动的方式进行。动力学已经通过计算机模拟和动理学理论进行了研究。发现构象转变的速率决定步骤发生在一种通过分子附近部分的变形来保持局部的模式中。一种特别重要的协同作用类型,即相邻第二键的曲柄式反向旋转,被确定。讨论了提供构象转变动力学证据的实验。