Mohammad-Rafiee F, Golestanian R
Institute for Advanced Studies in Basic Sciences, 45195-159, Zanjan, Iran.
Eur Phys J E Soft Matter. 2003 Dec;12(4):599-604. doi: 10.1140/epje/e2004-00032-5.
The response of a short DNA segment to bending is studied, taking into account the anisotropy in the bending rigidities caused by the double-helical structure. It is shown that the anisotropy introduces an effective nonlinear twist-bend coupling that can lead to the formation of kinks and modulations in the curvature and/or in the twist, depending on the values of the elastic constants and the imposed deflection angle. The typical wavelength for the modulations, or the distance between the neighboring kinks is found to be set by half of the DNA pitch.
考虑到由双螺旋结构引起的弯曲刚度的各向异性,对短DNA片段的弯曲响应进行了研究。结果表明,这种各向异性引入了一种有效的非线性扭曲-弯曲耦合,根据弹性常数的值和施加的偏转角,这可能导致扭结的形成以及曲率和/或扭曲的调制。发现调制的典型波长,即相邻扭结之间的距离,由DNA螺距的一半确定。