Kielian M, Helenius A
J Cell Biol. 1985 Dec;101(6):2284-91. doi: 10.1083/jcb.101.6.2284.
The spike glycoproteins of Semliki Forest virus mediate membrane fusion between the viral envelope and cholesterol-containing target membranes under conditions of mildly acidic pH (pH less than 6.2). The fusion reaction is critical for the infectious cycle, catalyzing virus penetration from the acidic endosome compartment. To define the role of the viral spike glycoproteins in the fusion reaction, conformational changes in the spikes at acid pH were studied using protease digestion and binding assays to liposomes and nonionic detergent. A method was also developed to prepare fragments of both transmembrane subunit glycopolypeptides of the spike, E1 and E2, which lacked the hydrophobic anchor peptides. Unlike the intact spikes the fragments were monomeric and therefore useful for obtaining information on conformational changes in individual subunits. The results showed that both E1 and E2 undergo irreversible conformational changes at the pH of fusion, that the conformational change of E1 depends, in addition to acidic pH, on the presence of cholesterol, and that no major changes in the solubility properties of the spikes takes place. On the basis of these findings it was concluded that fusion involves both subunits of the spike and that E1 confers the stereo-specific sterol requirement. The results indicated, moreover, that acid-induced fusion of Semliki Forest virus differs in important respects from that of influenza virus, another well-defined model system for protein-mediated membrane fusion.
在轻度酸性pH(pH小于6.2)条件下,塞姆利基森林病毒的刺突糖蛋白介导病毒包膜与含胆固醇的靶膜之间的膜融合。融合反应对于感染周期至关重要,它催化病毒从酸性内体区室穿透。为了确定病毒刺突糖蛋白在融合反应中的作用,利用蛋白酶消化以及与脂质体和非离子去污剂的结合试验,研究了酸性pH条件下刺突的构象变化。还开发了一种方法来制备刺突的两种跨膜亚基糖多肽E1和E2的片段,这些片段缺少疏水锚定肽。与完整的刺突不同,这些片段是单体的,因此可用于获取有关各个亚基构象变化的信息。结果表明,在融合pH下,E1和E2都经历不可逆的构象变化,E1的构象变化除了依赖于酸性pH外,还取决于胆固醇的存在,并且刺突的溶解性没有发生重大变化。基于这些发现得出结论,融合涉及刺突的两个亚基,并且E1赋予了立体特异性固醇需求。此外,结果表明,塞姆利基森林病毒的酸诱导融合在重要方面不同于流感病毒,后者是另一个明确的蛋白质介导膜融合模型系统。