Sturman L S, Holmes K V, Behnke J
J Virol. 1980 Jan;33(1):449-62. doi: 10.1128/JVI.33.1.449-462.1980.
The two envelope glycoproteins and the viral nucleocapsid of the coronavirus A59 were isolated by solubilization of the viral membrane with Nonidet P-40 at 4 degrees C followed by sucrose density gradient sedimentation. Isolated E2 consisted of rosettes of peplomers, whereas E1, the membrane glycoprotein, was irregular and amorphous. Under certain conditions significant interactions occurred between components of Nonidet P-40-disrupted virions. Incubation of the Nonidet P-40-disrupted virus at 37 degrees C resulted in formation of a complex between one of the viral glycoproteins, E1, and the viral nucleocapsid. This was caused by a temperature-dependent conformational change in E1, resulting in aggregation of E1 and interaction with the viral RNA in the nucleocapsid. E1 also bound rRNA. The E1-nucleocapsid complexes can be distinguished on sucrose and Renografin density gradients from native viral nucleocapsids. The separation of the membrane glycoprotein E1 from the peplomeric glycoprotein E2 permitted preparation of antisera against these isolated proteins. A model is proposed for the arrangement of the three major structural proteins in the coronavirus A59 virion in relation to the viral envelope and RNA.
通过在4℃下用诺乃洗涤剂P - 40溶解病毒膜,随后进行蔗糖密度梯度沉降,分离出了冠状病毒A59的两种包膜糖蛋白和病毒核衣壳。分离出的E2由纤突蛋白玫瑰花结组成,而膜糖蛋白E1则不规则且无定形。在某些条件下,诺乃洗涤剂P - 40破坏的病毒颗粒成分之间发生了显著的相互作用。将诺乃洗涤剂P - 40破坏的病毒在37℃孵育导致一种病毒糖蛋白E1与病毒核衣壳之间形成复合物。这是由E1中温度依赖性的构象变化引起的,导致E1聚集并与核衣壳中的病毒RNA相互作用。E1也结合rRNA。E1 - 核衣壳复合物在蔗糖和泛影葡胺密度梯度上可与天然病毒核衣壳区分开来。将膜糖蛋白E1与纤突糖蛋白E2分离后,得以制备针对这些分离蛋白的抗血清。本文提出了一个关于冠状病毒A59病毒体中三种主要结构蛋白相对于病毒包膜和RNA的排列模型。