Millman B M, Irving T C, Nickel B G, Loosley-Millman M E
Biophys J. 1984 Mar;45(3):551-6. doi: 10.1016/S0006-3495(84)84192-2.
The lateral separation of virus rod particles of tobacco mosaic virus has been studied as a function of externally applied osmotic pressure using an osmotic stress technique. The results have been used to test the assumption that lattice equilibrium in such gels results from a balance between repulsive (electrostatic) and attractive (van der Waals and osmotic) forces. Results have been obtained at different ionic strengths (0.001 to 1.0 M) and pH's (5.0 to 7.2) and compared with calculated curves for electrostatic nad van der Waals pressure. Under all conditions studied, interrod spacing decreased with increasing applied pressure, the spacings being smaller at higher ionic strengths. Only small differences were seen when the pH was changed. At ionic strengths near 0.1 M, agreement between theory and experiment is good, but the theory appears to underestimate electrostatic forces at high ionic strengths and to underestimate attractive forces at large interrod spacings (low ionic strengths). It is concluded that an electrostatic-van der Waals force balance can explain stability in tobacco mosaic virus gels near physiological conditions and can provide a good first approximation elsewhere.
利用渗透压技术,研究了烟草花叶病毒杆状颗粒的侧向间距与外部施加渗透压之间的关系。研究结果用于检验以下假设:此类凝胶中的晶格平衡是由排斥力(静电)和吸引力(范德华力和渗透压)之间的平衡所致。在不同离子强度(0.001至1.0M)和pH值(5.0至7.2)条件下获得了研究结果,并与静电和范德华压力的计算曲线进行了比较。在所研究的所有条件下,杆间间距随外加压力的增加而减小,在较高离子强度下间距更小。改变pH值时仅观察到微小差异。在离子强度接近0.1M时,理论与实验结果吻合良好,但该理论在高离子强度下似乎低估了静电力,在杆间间距较大(低离子强度)时似乎低估了吸引力。得出的结论是,静电-范德华力平衡可以解释生理条件附近烟草花叶病毒凝胶的稳定性,并能在其他情况下提供良好的初步近似。