Volkov S N
Bogolyubov Institute for Theoretical Physics, Kiev, 03143 Ukraine.
J Biol Phys. 2005 Dec;31(3-4):323-37. doi: 10.1007/s10867-005-1284-3.
An approach to the description of DNA conformational transformations of B-A type is presented. Due to the consideration of joint motions of DNA structural elements the model for DNA transformation is constructed in the two-component form. One component is the degree of freedom of the elastic rod, and another component - the effective coordinate of the conformational transformation. In the model the internal and external components are interrelated, as it is characteristic for DNA B-A rearrangements. It is demonstrated that kinetic energy of the double helix transformations of heterogeneous DNA can be put in homogeneous form. In the frame of the developed approach the possible localized excitations in a static state are found to compare with the experiments on DNA B-A deformability. The comparison shows good qualitative agreement between theory and experiment. The conclusion is made that the found excitations in the DNA structure may be classified as static conformational solitons, and that such localized excitations may play the key role in the mechanisms of DNA intrinsic bending.
本文提出了一种描述B-A型DNA构象转变的方法。由于考虑了DNA结构元件的联合运动,构建了双组分形式的DNA转变模型。一个组分是弹性杆的自由度,另一个组分是构象转变的有效坐标。在该模型中,内部和外部组分相互关联,这是DNA B-A重排的特征。结果表明,异质DNA双螺旋转变的动能可以转化为均匀形式。在所提出的方法框架内,发现了静态状态下可能的局域激发,并与DNA B-A变形性实验进行了比较。比较结果表明理论与实验在定性上吻合良好。得出的结论是,在DNA结构中发现的激发可归类为静态构象孤子,并且这种局域激发可能在DNA固有弯曲机制中起关键作用。