Hughes M T, Matrosovich M, Rodgers M E, McGregor M, Kawaoka Y
Department of Pathobiological Sciences, School of Veterinary Medicine, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
J Virol. 2000 Jun;74(11):5206-12. doi: 10.1128/jvi.74.11.5206-5212.2000.
Influenza A viruses possess both hemagglutinin (HA), which is responsible for binding to the terminal sialic acid of sialyloligosaccharides on the cell surface, and neuraminidase (NA), which contains sialidase activity that removes sialic acid from sialyloligosaccharides. Interplay between HA receptor-binding and NA receptor-destroying sialidase activity appears to be important for replication of the virus. Previous studies by others have shown that influenza A viruses lacking sialidase activity can undergo multiple cycles of replication if sialidase activity is provided exogenously. To investigate the sialidase requirement of influenza viruses further, we generated a series of sialidase-deficient mutants. Although their growth was less efficient than that of the parental NA-dependent virus, these viruses underwent multiple cycles of replication in cell culture, eggs, and mice. To understand the molecular basis of this viral growth adaptation in the absence of sialidase activity, we investigated changes in the HA receptor-binding affinity of the sialidase-deficient mutants. The results show that mutations around the HA receptor-binding pocket reduce the virus's affinity for cellular receptors, compensating for the loss of sialidase. Thus, sialidase activity is not absolutely required in the influenza A virus life cycle but appears to be necessary for efficient virus replication.
甲型流感病毒同时拥有血凝素(HA)和神经氨酸酶(NA),前者负责与细胞表面唾液酸寡糖的末端唾液酸结合,后者具有从唾液酸寡糖中去除唾液酸的唾液酸酶活性。HA的受体结合和NA的受体破坏唾液酸酶活性之间的相互作用似乎对病毒复制很重要。其他人之前的研究表明,如果外源提供唾液酸酶活性,缺乏唾液酸酶活性的甲型流感病毒可以进行多个复制周期。为了进一步研究流感病毒对唾液酸酶的需求,我们构建了一系列唾液酸酶缺陷型突变体。尽管它们的生长效率低于亲本NA依赖型病毒,但这些病毒在细胞培养物、鸡蛋和小鼠中都经历了多个复制周期。为了了解在没有唾液酸酶活性的情况下这种病毒生长适应性的分子基础,我们研究了唾液酸酶缺陷型突变体HA受体结合亲和力的变化。结果表明,HA受体结合口袋周围的突变降低了病毒对细胞受体的亲和力,从而弥补了唾液酸酶的缺失。因此,唾液酸酶活性在甲型流感病毒生命周期中并非绝对必需,但似乎对高效病毒复制是必要的。