Yue Wei, Davenport Matthew G, Shackelford Julia, Pagano Joseph S
Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Virol. 2004 Apr;78(7):3542-52. doi: 10.1128/jvi.78.7.3542-3552.2004.
The Epstein-Barr virus (EBV) nuclear antigen 2 (EBNA-2) is a key gene expressed in EBV type III latent infection that can transactivate numerous promoters, including those for all the other type III viral latency genes as well as cellular genes responsible for cell proliferation. EBNA-2 is essential for EBV-mediated immortalization of primary B lymphocytes. We now report that EBNA-2, a phosphoprotein, is hyperphosphorylated specifically in mitosis. Evidence that the cyclin-dependent kinase p34(cdc2) may be involved in this hyperphosphorylation includes (i) coimmunoprecipitation of EBNA-2 and p34(cdc2), suggesting physical association; (ii) temporal correlation between hyperphosphorylation of EBNA-2 and an increase in p34(cdc2) kinase activity; and (iii) ability of purified p34(cdc2)/cyclin B1 kinase to phosphorylate EBNA-2 in vitro. Hyperphosphorylation of EBNA-2 appears to suppress its ability to transactivate the latent membrane protein 1 (LMP-1) promoter by about 50%. The association between EBNA-2 and PU.1 is also decreased by about 50% in M-phase-arrested cells, as shown by coimmunoprecipitation from cell lysates, suggesting that hyperphosphorylation of EBNA-2 impairs its affinity for PU.1. Finally, endogenous LMP-1 mRNA levels in M phase are around 55% of those in asynchronously growing cells. These results suggest that regulation of gene expression during type III latency may be regulated in a cell-cycle-related manner.
爱泼斯坦-巴尔病毒(EBV)核抗原2(EBNA-2)是在EBV III型潜伏感染中表达的关键基因,它可以反式激活众多启动子,包括所有其他III型病毒潜伏基因以及负责细胞增殖的细胞基因的启动子。EBNA-2对于EBV介导的原代B淋巴细胞永生化至关重要。我们现在报告,EBNA-2作为一种磷蛋白,在有丝分裂过程中会发生特异性的过度磷酸化。细胞周期蛋白依赖性激酶p34(cdc2)可能参与这种过度磷酸化的证据包括:(i)EBNA-2和p34(cdc2)的共免疫沉淀,表明存在物理关联;(ii)EBNA-2过度磷酸化与p34(cdc2)激酶活性增加之间的时间相关性;以及(iii)纯化的p34(cdc2)/细胞周期蛋白B1激酶在体外磷酸化EBNA-2的能力。EBNA-2的过度磷酸化似乎会抑制其反式激活潜伏膜蛋白1(LMP-1)启动子的能力约50%。如从细胞裂解物中进行的共免疫沉淀所示,在M期停滞的细胞中,EBNA-2与PU.1之间的关联也降低了约50%,这表明EBNA-2的过度磷酸化会损害其对PU.1的亲和力。最后,M期内源性LMP-1 mRNA水平约为异步生长细胞中的55%。这些结果表明,III型潜伏期间的基因表达调控可能以细胞周期相关的方式进行调节。