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fus-1 a pH Shift Mutant of Semliki Forest Virus Acts by Altering Spike Subunit Interactions via a Mutation in the E2 Subunit

机译:fus-1Semliki森林病毒的pH移位突变体通过E2亚基中的突变改变穗亚基相互作用而起作用

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摘要

Semliki Forest virus (SFV), an enveloped alphavirus, is a well-characterized paradigm for viruses that infect cells via endocytic uptake and low-pH-triggered fusion. The SFV spike protein is composed of a dimer of E1 and E2 transmembrane subunits, which dissociate upon exposure to low pH, liberating E2 and the fusogenic E1 subunit to undergo independent conformational changes. SFV fusion and infection are blocked by agents such as ammonium chloride, which act by raising the pH in the endosome and inhibiting the low-pH-induced conformational changes in the SFV spike protein. We have previously isolated an SFV mutant, fus-1, that requires more acidic pH to trigger its fusion activity and is therefore more sensitive to inhibition by ammonium chloride. The acid shift in the fusion activity of fus-1 was here shown to be due to a more acidic pH threshold for the initial dissociation of the fus-1 spike dimer, thereby resulting in a more acidic pH requirement for the subsequent conformational changes in both fus-1 E1 and fus-1 E2. Sequence analysis demonstrated that the fus-1 phenotype was due to a mutation in the E2 spike subunit, threonine 12 to isoleucine. fus-1 revertants that have regained the parental fusion phenotype and ammonium chloride sensitivity were shown to have also regained E2 threonine 12. Our results identify a region of the SFV E2 spike protein subunit that regulates the pH dependence of E1-catalyzed fusion by controlling the dissociation of the E1/E2 dimer.
机译:Semliki Forest病毒(SFV)是一种被包膜的alpha病毒,是一种非常典型的病毒范例,可通过内吞摄取和低pH触发的融合感染细胞。 SFV刺突蛋白由E1和E2跨膜亚基的二聚体组成,它们在暴露于低pH下会解离,从而释放E2和融合E1亚基,从而经历独立的构象变化。 SFV的融合和感染被诸如氯化铵之类的试剂阻断,这些试剂通过提高内体中的pH值并抑制SFV刺突蛋白中的低pH值引起的构象变化。我们之前已经分离出SFV突变体fus-1,该突变体需要更多的酸性pH值才能触发其融合活性,因此对氯化铵的抑制作用更为敏感。此处显示的fus-1融合活性的酸移是由于fus-1尖峰二聚体的初始解离的酸性pH阈值较高,因此,对于随后的两种构象变化,酸性要求更高fus-1 E1和fus-1 E2。序列分析表明,fus-1表型是由于E2穗亚基苏氨酸12突变为异亮氨酸所致。已显示已恢复亲本融合表型和氯化铵敏感性的fus-1回复子也恢复了E2苏氨酸12。我们的结果确定了SFV E2突突蛋白亚基区域,该区域可通过控制E1催化融合的pH依赖性来调节E1 / E2二聚体的解离。

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