Lipton H L, Friedmann A
J Virol. 1980 Mar;33(3):1165-72. doi: 10.1128/JVI.33.3.1165-1172.1980.
Theiler's murine encephalomyelitis viruses (TMEV) are separable into two groups based on their biological behavior: those highly virulent isolates which are unable to cause persistent infection and the less virulent isolates which regularly produce persistent central nervous system infection in mice. Two highly virulent and five less virulent TMEV were found to have the same buoyant density (1.34 g/ml) on isopycnic centrifugation and virion structure by electron microscopy. Negatively stained virus particles purified in Cs(2)SO(4) gradients appeared to have icosahedral symmetry and measured 28 nm in diameter. Mature virions were found to possess three major structural polypeptides, VP1, VP2 and VP3, in the range of 25,000 to 35,000 daltons, and a smaller fourth major polypeptide, VP4, of 6,000 daltons on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The precursor of VP2 and VP4, VP0, which is a minor polypeptide of mature picornavirus particles, was also identified. However, a slight but consistent difference in several of the capsid polypeptides between the highly virulent and less virulent TMEV was found. VP1 was slightly larger (34,000 versus 33,500 daltons) and VP2 was slightly smaller (31,000 versus 32,000 daltons) for the highly virulent strains compared to the same polypeptide species in the less virulent viruses. VP0 was also slightly smaller (35,500 versus 36,000 daltons) for the highly virulent isolates compared to their less virulent counterparts. Finally, trypsin which was used initially in our purification procedure resulted in preferential cleavage of a 2,000-molecular-weight fragment or fragments from VP1 of only the less virulent isolates.
泰勒氏鼠脑脊髓炎病毒(TMEV)可根据其生物学行为分为两组:一组是高毒力毒株,无法引起持续性感染;另一组是低毒力毒株,能在小鼠中经常引发持续性中枢神经系统感染。通过等密度离心法发现,两种高毒力毒株和五种低毒力毒株具有相同的浮力密度(1.34克/毫升),并且通过电子显微镜观察到它们的病毒粒子结构相同。在Cs(2)SO(4)梯度中纯化的经负染色的病毒粒子似乎具有二十面体对称性,直径为28纳米。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳中,成熟病毒粒子被发现具有三种主要结构多肽,VP1、VP2和VP3,分子量在25,000至35,000道尔顿之间,还有一种较小的第四种主要多肽VP4,分子量为6,000道尔顿。VP2和VP4的前体VP0也被鉴定出来,它是成熟微小核糖核酸病毒粒子的一种次要多肽。然而,在高毒力和低毒力TMEV的几种衣壳多肽之间发现了轻微但一致的差异。与低毒力病毒中的相同多肽种类相比,高毒力毒株的VP1略大(34,000道尔顿对33,500道尔顿),VP2略小(31,000道尔顿对32,000道尔顿)。与低毒力毒株相比,高毒力毒株的VP0也略小(35,500道尔顿对36,000道尔顿)。最后,我们最初在纯化过程中使用的胰蛋白酶导致仅低毒力毒株的VP1优先裂解出一个或多个2,000分子量的片段。