Chen Y Z, Prohofsky E W
Department of Physics, Purdue University, West Lafayette University, Indiana.
Biopolymers. 1995 Jun;35(6):657-66. doi: 10.1002/bip.360350611.
Calculations of the normal mode spectrum of a netropsin-DNA complex, an isolated DNA helix of the same sequence, and a free netropsin molecule were carried out and compared with observations. We find that the frequency of modes of the complex that are primarily vibrations localized to the helix are relatively unchanged from the frequencies found for similar modes of the isolated helix. On the other hand, the frequencies of thosemodes of the complex that are found to be primarily in the netropsin are found to change significantly in the complex from that of the free netropsin. Further analysis indicates that the changes in the "netropsin modes" are primarily due to the conformational deformation induced in the netropsin by formation of the complex. All the frequencies and shifts in frequency are in good agreement with recent Raman measurements.
对一种鱼精蛋白-DNA复合物、相同序列的孤立DNA螺旋以及游离鱼精蛋白分子的正常模式光谱进行了计算,并与观测结果进行了比较。我们发现,复合物中主要定域于螺旋的振动模式频率与孤立螺旋类似模式的频率相比相对不变。另一方面,发现复合物中主要存在于鱼精蛋白中的那些模式的频率与游离鱼精蛋白相比有显著变化。进一步分析表明,“鱼精蛋白模式”的变化主要是由于复合物形成导致鱼精蛋白构象变形引起的。所有频率及频率变化与最近的拉曼测量结果高度吻合。