Liu G, Schlick T, Olson A J, Olson W K
Department of Chemistry, Rutgers, the State University of New Jersey, New Brunswick 08903, USA.
Biophys J. 1997 Oct;73(4):1742-62. doi: 10.1016/S0006-3495(97)78205-5.
A new Fourier series representation of supercoiled DNA is employed in Langevin dynamics simulations to study large-scale configurational motions of intermediate-length chains. The polymer is modeled as an ideal elastic rod subject to long-range van der Waals' interactions. The van der Waals' term prevents the self-contact of distant chain segments and also mimics attractive forces thought to stabilize the association of closely spaced charged rods. The finite Fourier series-derived polymer formulation is an alternative to the piecewise B-spline curves used in past work to describe the motion of smoothly deformed supercoiled DNA in terms of a limited number of independent variables. This study focuses on two large-scale configurational events: the interconversion between circular and figure-8 forms at a relatively low level of supercoiling, and the transformation between branched and interwound structures at a higher superhelical density.
一种新的超螺旋DNA傅里叶级数表示法被用于朗之万动力学模拟,以研究中等长度链的大规模构象运动。聚合物被建模为受长程范德华相互作用影响的理想弹性杆。范德华项可防止远距离链段的自接触,还模拟了被认为能稳定紧密排列的带电杆之间缔合的吸引力。源自有限傅里叶级数的聚合物公式是过去工作中用于描述平滑变形的超螺旋DNA运动的分段B样条曲线的替代方法,该运动由有限数量的独立变量表示。本研究聚焦于两个大规模构象事件:在相对低水平的超螺旋状态下,环状和8字形之间的相互转换;以及在更高超螺旋密度下,分支结构和缠绕结构之间的转变。