Ahsan Nazmul, Kanda Teru, Nagashima Kazuo, Takada Kenzo
Department of Tumor Virology, Institute for Genetic Medicine, Hokkaido University, Sapporo 060-0815, Japan.
J Virol. 2005 Apr;79(7):4415-24. doi: 10.1128/JVI.79.7.4415-4424.2005.
The Epstein-Barr virus (EBV) latent membrane protein 1 (LMP1), which is critical for EBV-induced B-cell transformation, is also abundantly expressed during the lytic cycle of viral replication. However, the biological significance of this strong LMP1 induction remains unknown. We engineered a bacterial artificial chromosome clone containing the entire genome of Akata strain EBV to specifically disrupt the LMP1 gene. Akata cell clones harboring the episomes of LMP1-deleted EBV were established, and the effect of LMP1 loss on virus production was investigated. We found that the degree of viral DNA amplification and the expression levels of viral late gene products were unaffected by LMP1 loss, demonstrating that the LMP1-deleted EBV entered the lytic replication cycle as efficiently as the wild-type counterpart. This was confirmed by our electron microscopic observation that nucleocapsid formation inside nuclei occurred even in the absence of LMP1. By contrast, loss of LMP1 severely impaired virus release into culture supernatants, resulting in poor infection efficiency. The expression of truncated LMP1 in Akata cells harboring LMP1-deleted EBV rescued the virus release into the culture supernatant and the infectivity, and full-length LMP1 partially rescued the infectivity. These results indicate that inducible expression of LMP1 during the viral lytic cycle plays a critical role in virus production.
爱泼斯坦-巴尔病毒(EBV)的潜伏膜蛋白1(LMP1)对EBV诱导的B细胞转化至关重要,在病毒复制的裂解周期中也大量表达。然而,这种强烈的LMP1诱导的生物学意义仍不清楚。我们构建了一个包含赤羽病株EBV全基因组的细菌人工染色体克隆,以特异性破坏LMP1基因。建立了携带LMP1缺失的EBV附加体的赤羽病细胞克隆,并研究了LMP1缺失对病毒产生的影响。我们发现,病毒DNA扩增程度和病毒晚期基因产物的表达水平不受LMP1缺失的影响,这表明LMP1缺失的EBV进入裂解复制周期的效率与野生型相当。我们的电子显微镜观察证实,即使在没有LMP1的情况下,细胞核内也会发生核衣壳形成。相比之下,LMP1的缺失严重损害了病毒释放到培养上清液中的能力,导致感染效率低下。在携带LMP1缺失的EBV的赤羽病细胞中表达截短的LMP1可挽救病毒释放到培养上清液中的能力和感染性,全长LMP1可部分挽救感染性。这些结果表明,病毒裂解周期中LMP1的诱导表达在病毒产生中起关键作用。