Stegmann T, Booy F P, Wilschut J
Laboratory of Physiological Chemistry, University of Groningen, The Netherlands.
J Biol Chem. 1987 Dec 25;262(36):17744-9.
The hemagglutinin of influenza virus undergoes a conformational change at low pH, which results in exposure of a hydrophobic segment of the molecule, crucial to expression of viral fusion activity. We have studied the effects of incubation of the virus at low pH either at 37 or 0 degrees C. Treatment of the virus alone at pH 5.0 induces the virus particles to become hydrophobic, as assessed by measuring the binding of zwitterionic liposomes to the virus. At 37 degrees C this hydrophobicity is transient, electron microscopic examination of the virus reveals a highly disorganized spike layer, and fusion activity toward ganglioside-containing zwitterionic liposomes, measured at 37 degrees C with a kinetic fluorescence assay, is irreversibly lost. By contrast, after preincubation of the virus alone at pH 5.0 and 0 degrees C fusion activity remains unaffected. Yet, the preincubation at 0 degrees C does result in exposure of the hydrophobic segment of hemagglutinin, but now hydrophobicity is sustained and viral spike morphology unaltered. Hydrophobicity also remains to a significant extent upon pH neutralization, but fusion activity is negligible under these conditions. It is concluded that for optimal expression of fusion activity the virus must be bound to the target membrane before exposure to low pH. Furthermore, even after exposure of the hydrophobic segment of hemagglutinin, fusion occurs only at low pH. Finally, fusion occurs only at elevated temperature, possibly reflecting the unfolding of hemagglutinin trimers or the cooperative action of several hemagglutinin trimers in the reaction.
流感病毒的血凝素在低pH值下会发生构象变化,这会导致分子的一个疏水片段暴露出来,这对病毒融合活性的表达至关重要。我们研究了病毒在37℃或0℃下于低pH值环境中孵育的影响。单独在pH 5.0条件下处理病毒会使病毒颗粒变得疏水,这可通过测量两性离子脂质体与病毒的结合来评估。在37℃时,这种疏水性是短暂的,电子显微镜检查显示病毒的刺突层高度紊乱,并且用动力学荧光测定法在37℃下测量的对含神经节苷脂的两性离子脂质体的融合活性不可逆地丧失。相比之下,在pH 5.0和0℃下单独预孵育病毒后,融合活性不受影响。然而,在0℃下预孵育确实会导致血凝素疏水片段的暴露,但此时疏水性得以维持且病毒刺突形态未改变。在pH值中和后,疏水性在很大程度上也仍然存在,但在这些条件下融合活性可忽略不计。得出的结论是,为了使融合活性得到最佳表达,病毒必须在暴露于低pH值之前与靶膜结合。此外,即使血凝素的疏水片段暴露后,融合也仅在低pH值下发生。最后,融合仅在升高的温度下发生,这可能反映了血凝素三聚体的展开或几个血凝素三聚体在反应中的协同作用。