Iriarte-Alonso Maiara A, Bittner Alexander M, Chiantia Salvatore
CIC nanoGUNE (BRTA), Tolosa Hiribidea 76, 20018 Donostia, Spain.
Ikerbasque, Basque Foundation for Science, Pl. Euskadi 5, 48009 Bilbao, Spain.
BBA Adv. 2022 Mar 5;2:100048. doi: 10.1016/j.bbadva.2022.100048. eCollection 2022.
While the molecular mechanisms of virus infectivity are rather well known, the detailed consequences of environmental factors on virus biophysical properties are poorly understood. Seasonal influenza outbreaks are usually connected to the low winter temperature, but also to the low relative air humidity. Indeed, transmission rates increase in cold regions during winter. While low temperature must slow degradation processes, the role of low humidity is not clear. We studied the effect of relative humidity on a model of Influenza A H1N1 virus envelope, a supported lipid bilayer containing the surface glycoprotein hemagglutinin (HA), which is present in the viral envelope in very high density. For complete cycles of hydration, dehydration and rehydration, we evaluate the membrane properties in terms of structure and dynamics, which we assess by combining confocal fluorescence microscopy, raster image correlation spectroscopy, line-scan fluorescence correlation spectroscopy and atomic force microscopy. Our findings indicate that the presence of HA prevents macroscopic membrane damage after dehydration. Without HA, fast membrane disruption is followed by irreversible loss of lipid and protein mobility. Although our model is principally limited by the membrane composition, the macroscopic effects of HA under dehydration stress reveal new insights on the stability of the virus at low relative humidity.
虽然病毒感染性的分子机制已广为人知,但环境因素对病毒生物物理特性的具体影响却知之甚少。季节性流感爆发通常与冬季低温有关,但也与低相对空气湿度有关。事实上,冬季寒冷地区的传播率会增加。虽然低温必然会减缓降解过程,但低湿度的作用尚不清楚。我们研究了相对湿度对甲型H1N1流感病毒包膜模型的影响,该模型是一种含有表面糖蛋白血凝素(HA)的支撑脂质双层,HA以非常高的密度存在于病毒包膜中。对于完整的水合、脱水和再水合循环,我们从结构和动力学方面评估膜的性质,通过结合共聚焦荧光显微镜、光栅图像相关光谱、线扫描荧光相关光谱和原子力显微镜来进行评估。我们的研究结果表明,HA的存在可防止脱水后宏观膜损伤。没有HA时,膜会迅速破坏,随后脂质和蛋白质流动性会不可逆转地丧失。尽管我们的模型主要受膜组成的限制,但HA在脱水应激下的宏观效应揭示了关于病毒在低相对湿度下稳定性的新见解。