Townsley Alan C, Senkevich Tatiana G, Moss Bernard
Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892-0445, USA.
J Virol. 2005 Sep;79(17):10988-98. doi: 10.1128/JVI.79.17.10988-10998.2005.
The L5R gene of vaccinia virus is conserved among all sequenced members of the Poxviridae but has no predicted function or recognized nonpoxvirus homolog. Here we provide the initial characterization of the L5 protein. L5 is expressed following DNA replication with kinetics typical of a viral late protein, contains a single intramolecular disulfide bond formed by the virus-encoded cytoplasmic redox pathway, and is incorporated into intracellular mature virus particles, where it is exposed on the membrane surface. To determine whether L5 is essential for virus replication, we constructed a mutant that synthesizes L5 only in the presence of an inducer. The mutant exhibited a conditional-lethal phenotype, as cell-to-cell virus spread and formation of infectious progeny were dependent on the inducer. Nevertheless, all stages of replication occurred in the absence of inducer and intracellular and extracellular progeny virions appeared morphologically normal. Noninfectious virions lacking L5 could bind to cells, but the cores did not enter the cytoplasm. In addition, virions lacking L5 were unable to mediate low-pH-triggered cell-cell fusion from within or without. The phenotype of the L5R conditional lethal mutant is identical to that of recently described mutants in which expression of the A21, A28, and H2 genes is repressed. Thus, L5 is the fourth component of the poxvirus cell entry/fusion apparatus that is required for entry of both the intracellular and extracellular infectious forms of vaccinia virus.
痘苗病毒的L5R基因在痘病毒科所有已测序成员中保守,但无预测功能或已知的非痘病毒同源物。在此,我们对L5蛋白进行了初步表征。L5在DNA复制后表达,其动力学表现为典型的病毒晚期蛋白,含有一个由病毒编码的细胞质氧化还原途径形成的分子内二硫键,并被整合到细胞内成熟病毒颗粒中,暴露于膜表面。为确定L5对病毒复制是否必不可少,我们构建了一个仅在诱导剂存在时合成L5的突变体。该突变体表现出条件致死表型,因为细胞间病毒传播和感染性子代的形成依赖于诱导剂。然而,在没有诱导剂的情况下复制的所有阶段均会发生,细胞内和细胞外子代病毒粒子在形态上看起来正常。缺乏L5的无感染性病毒粒子可与细胞结合,但核心无法进入细胞质。此外,缺乏L5的病毒粒子无法介导从内部或外部触发的低pH诱导的细胞间融合。L5R条件致死突变体的表型与最近描述的抑制A21、A28和H2基因表达的突变体相同。因此,L5是痘苗病毒细胞内和细胞外感染性形式进入所需的痘病毒细胞进入/融合装置的第四个组成部分。