Sturtevant J M, Velicelebi G, Jaenicke R, Lauffer M A
Biochemistry. 1981 Jun 23;20(13):3792-800. doi: 10.1021/bi00516a019.
The endothermic polymerization of the coat protein of tobacco mosaic virus has been studied by high-sensitivity differential scanning calorimetry, with control experiments involving turbidimetry and sedimentation velocity measurements. The variation of the apparent extent of polymerization under conditions close to equilibrium as the temperature is raised follows a course which is difficult to duplicate on the basis of simple models for the process. The enthalpy of polymerization at low protein concentration varies from 12.5 kcal (mol of monomer)-1 (17500 daltons) under conditions where the product is largely a mixture of short helical rods to 6.0 kcal ol-1 for the formation of double disks containing 34 monomer units. In the former case, the polymerization is accompanied by a decrease in apparent heat capacity of 350 cal K-1 mol-1 while in the latter there is an increase of 150 cal K-1 mol-1. These results constitute evidence that these two types of polymerization involve intersubunit bonds of quite different chemical character.
利用高灵敏度差示扫描量热法研究了烟草花叶病毒外壳蛋白的吸热聚合反应,并通过比浊法和沉降速度测量进行对照实验。随着温度升高,在接近平衡的条件下,聚合反应的表观程度变化遵循一个过程,该过程很难基于该过程的简单模型进行复制。在低密度蛋白浓度下,聚合反应的焓值在产物主要为短螺旋杆混合物的条件下为12.5千卡/(摩尔单体)-1(17500道尔顿),对于形成含有34个单体单元的双盘,则为6.0千卡/摩尔-1。在前一种情况下,聚合反应伴随着表观热容降低350卡/(开尔文·摩尔)-1,而在后一种情况下,表观热容增加150卡/(开尔文·摩尔)-1。这些结果证明了这两种聚合反应涉及化学性质截然不同的亚基间键。