Nelson Steevenson, Jost Christiane A, Xu Qinq, Ess Jessica, Martin Julie E, Oliphant Theodore, Whitehead Stephen S, Durbin Anna P, Graham Barney S, Diamond Michael S, Pierson Theodore C
Viral Pathogenesis Section, Laboratory of Viral Diseases, National Institutes of Health, Bethesda, Maryland, United States of America.
PLoS Pathog. 2008 May 9;4(5):e1000060. doi: 10.1371/journal.ppat.1000060.
West Nile virions incorporate 180 envelope (E) proteins that orchestrate the process of virus entry and are the primary target of neutralizing antibodies. The E proteins of newly synthesized West Nile virus (WNV) are organized into trimeric spikes composed of pre-membrane (prM) and E protein heterodimers. During egress, immature virions undergo a protease-mediated cleavage of prM that results in a reorganization of E protein into the pseudo-icosahedral arrangement characteristic of mature virions. While cleavage of prM is a required step in the virus life cycle, complete maturation is not required for infectivity and infectious virions may be heterogeneous with respect to the extent of prM cleavage. In this study, we demonstrate that virion maturation impacts the sensitivity of WNV to antibody-mediated neutralization. Complete maturation results in a significant reduction in sensitivity to neutralization by antibodies specific for poorly accessible epitopes that comprise a major component of the human antibody response following WNV infection or vaccination. This reduction in neutralization sensitivity reflects a decrease in the accessibility of epitopes on virions to levels that fall below a threshold required for neutralization. Thus, in addition to a role in facilitating viral entry, changes in E protein arrangement associated with maturation modulate neutralization sensitivity and introduce an additional layer of complexity into humoral immunity against WNV.
西尼罗河病毒粒子包含180个包膜(E)蛋白,这些蛋白协调病毒进入过程,并且是中和抗体的主要靶标。新合成的西尼罗河病毒(WNV)的E蛋白被组织成由前膜(prM)和E蛋白异二聚体组成的三聚体刺突。在出芽过程中,未成熟的病毒粒子经历蛋白酶介导的prM切割,导致E蛋白重新组织成成熟病毒粒子特有的假二十面体排列。虽然prM的切割是病毒生命周期中的一个必要步骤,但感染性并不需要完全成熟,并且感染性病毒粒子在prM切割程度方面可能是异质的。在本研究中,我们证明病毒粒子成熟会影响WNV对抗体介导中和作用的敏感性。完全成熟导致对由难以接近的表位特异性抗体的中和敏感性显著降低,这些表位是WNV感染或疫苗接种后人类抗体反应的主要组成部分。这种中和敏感性的降低反映了病毒粒子上表位的可及性降低到低于中和所需阈值的水平。因此,除了在促进病毒进入中起作用外,与成熟相关的E蛋白排列变化调节中和敏感性,并为针对WNV的体液免疫引入了额外的复杂性。