Fuller S D, Berriman J A, Butcher S J, Gowen B E
Structural Biology Programme, European Molecular Biology Laboratory, Heidelberg Federal Republic of Germany.
Cell. 1995 Jun 2;81(5):715-25. doi: 10.1016/0092-8674(95)90533-2.
Time-resolved cryoelectron microscopy reveals the first step in the conformational changes that enable membrane fusion in Semliki Forest virus. The neutral pH structure reveals a central cavity within the spike complex, plate-like extensions forming a layer above the membrane, and the paths of the paired transmembrane domains connecting the trimeric spikes and pentamer-hexamer clustered capsid subunits. Low pH treatment results in centrifugal movement of E2, the receptor-binding subunit, centripetal movement of E1 to narrow the central cavity initiating the formation of an E1 trimer, and the extension of the E1 fusion sequence toward the target membrane.
时间分辨冷冻电子显微镜揭示了塞姆利基森林病毒中促成膜融合的构象变化的第一步。中性pH值结构显示出刺突复合物内的一个中心腔、在膜上方形成一层的板状延伸部分,以及连接三聚体刺突和五聚体 - 六聚体聚集衣壳亚基的成对跨膜结构域的路径。低pH处理导致受体结合亚基E2的离心运动、E1的向心运动以缩小中心腔从而启动E1三聚体的形成,以及E1融合序列向靶膜的延伸。