Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
J Virol. 2010 Nov;84(22):11624-33. doi: 10.1128/JVI.01625-10. Epub 2010 Sep 8.
Semliki Forest virus (SFV) is an enveloped alphavirus that infects cells by a low-pH-triggered membrane fusion reaction mediated by the viral E1 protein. E1 inserts into target membranes and refolds to a hairpin-like homotrimer containing a central core trimer and an outer layer composed of domain III and the juxtamembrane stem region. The key residues involved in mediating E1 trimerization are not well understood. We recently showed that aspartate 188 in the interface of the core trimer plays a critical role. Substitution with lysine (D188K) blocks formation of the core trimer and E1 trimerization and strongly inhibits virus fusion and infection. Here, we have isolated and characterized revertants that rescued the fusion and growth defects of D188K. These revertants included pseudorevertants containing acidic or polar neutral residues at E1 position 188 and a second-site revertant containing an E1 K176T mutation. Computational analysis using multiconformation continuum electrostatics revealed an important interaction bridging D188 of one chain with K176 of the adjacent chain in the core trimer. E1 K176 is completely conserved among the alphaviruses, and mutations of K176 to threonine (K176T) or isoleucine (K176I) produced similar fusion phenotypes as D188 mutants. Together, our data support a model in which a ring of three salt bridges formed by D188 and K176 stabilize the core trimer, a key intermediate of the alphavirus fusion protein.
塞姆利基森林病毒(SFV)是一种包膜阿尔法病毒,通过病毒 E1 蛋白介导的低 pH 触发的膜融合反应感染细胞。E1 插入靶细胞膜并重新折叠成发夹样三聚体,包含中央核心三聚体和由 III 结构域和近膜茎区组成的外层。介导 E1 三聚体形成的关键残基尚未得到很好的理解。我们最近表明,核心三聚体界面中的天冬氨酸 188 起着关键作用。用赖氨酸(D188K)取代会阻止核心三聚体的形成和 E1 三聚体化,并强烈抑制病毒融合和感染。在这里,我们已经分离并鉴定了能够挽救 D188K 融合和生长缺陷的回复突变体。这些回复突变体包括在 E1 位置 188 处含有酸性或极性中性残基的假回复突变体和含有 E1 K176T 突变的第二位点回复突变体。使用多构象连续静电的计算分析揭示了核心三聚体中一个链的 D188 与相邻链的 K176 之间的一个重要的桥接相互作用。E1 K176 在所有阿尔法病毒中完全保守,将 K176 突变为苏氨酸(K176T)或异亮氨酸(K176I)产生与 D188 突变体相似的融合表型。总之,我们的数据支持了这样一种模型,即由 D188 和 K176 形成的三个盐桥环稳定了核心三聚体,这是阿尔法病毒融合蛋白的一个关键中间产物。