Podgornik R, Strey H H, Rau D C, Parsegian V A
Laboratory of Structural Biology/DCRT/NIDDK, National Institutes of Health, Bethesda, MD 20892, USA.
Biophys Chem. 1995 Dec;57(1):111-21. doi: 10.1016/0301-4622(95)00058-6.
Simultaneous measurements on the packing and energetics of high-density liquid crystalline DNA phases show that the crowding of long DNA polyelectrolytes at ever increasing concentrations is accomplished through straightening of the random coils that the double helix assumes in dilute solution. X-ray scattering by ordered phases reveals that the local straightening of the molecules is also accompanied by their progressive immobilization and confinement within the molecular 'cages' created by neighboring molecules. These effects can be clearly observed through the measured energies of DNA packing under osmotic stress and through the changes in structural and dynamic characteristics of X-ray scattering from DNA in ordered arrays at different concentrations. The character of the confinement of large DNA motions for a wide range of DNA concentrations is dominated by the soft potentials of direct interaction. We do not see the power-law variation of energy vs. volume expected from space-filling fluctuations of molecules that enjoy no interaction except the hard clash of steric repulsion. Rather, in highly concentrated DNA mesophases we see a crowding of molecules through electrostatic or hydration repulsion that confines their movements and positions. This view is based on directly measured packing energies as well as on concurrently measured structural parameters while the DNA double helices are condensed under an externally applied osmotic pressure.
对高密度液晶DNA相的堆积和能量学进行的同步测量表明,随着浓度不断增加,长DNA聚电解质的拥挤是通过双螺旋在稀溶液中呈现的无规卷曲伸直来实现的。有序相的X射线散射显示,分子的局部伸直还伴随着它们在相邻分子形成的分子“笼”内逐渐固定和受限。通过在渗透应力下测量的DNA堆积能量以及不同浓度下有序阵列中DNA的X射线散射结构和动力学特征的变化,可以清楚地观察到这些效应。在很宽的DNA浓度范围内,大DNA运动受限的特征主要由直接相互作用的软势主导。我们没有看到分子除了空间排斥的硬碰撞外没有相互作用时,能量与体积的幂律变化。相反,在高度浓缩的DNA中间相中,我们看到分子通过静电或水合排斥而拥挤,从而限制了它们的运动和位置。这一观点基于直接测量的堆积能量以及同时测量的结构参数,此时DNA双螺旋在外部施加的渗透压下凝聚。