Hernandez-Ramon Elena E, Burns Julie E, Zhang Wenke, Walker Hannah F, Allen Stephanie, Antson Alfred A, Maitland Norman J
YCR Cancer Research Unit, Department of Biology (Area 13), University of York, Heslington, York, YO10 5DD United Kingdom.
J Virol. 2008 May;82(10):4853-61. doi: 10.1128/JVI.02388-07. Epub 2008 Mar 12.
Papillomavirus E2 proteins play a central role in regulating viral gene expression and replication. DNA-binding activity is associated with the C-terminal domain of E2, which forms a stable dimer, while the N-terminal domain is responsible for E2's replication and transactivation functions. The crystal structure of the latter domain revealed a second dimerization interface on E2 which may be responsible for DNA loop formation in the regulatory region of the human papillomavirus (HPV) genome. We investigated the biological significance of the N-terminal dimerization by introducing single amino acid substitutions into the dimerization interface. As expected, these substitutions did not influence the C-terminal dimerization and DNA-binding functions of E2. However, the mutations led to reduced transactivation of a synthetic E2-responsive reporter gene, while HPV DNA replication was unaffected. The effect of the mutations on DNA looping was visualized by atomic force microscopy. While wild-type E2 was able to generate DNA loops, all three mutant E2 proteins were defective in this ability. Our results suggest that N-terminal dimerization plays a role in E2-mediated transactivation, probably via DNA looping, a common mechanism for remote regulation of gene transcription.
乳头瘤病毒E2蛋白在调节病毒基因表达和复制中起核心作用。DNA结合活性与E2的C末端结构域相关,该结构域形成稳定的二聚体,而N末端结构域负责E2的复制和反式激活功能。后一个结构域的晶体结构揭示了E2上的第二个二聚化界面,这可能与人乳头瘤病毒(HPV)基因组调控区域中的DNA环形成有关。我们通过在二聚化界面引入单个氨基酸替换来研究N末端二聚化的生物学意义。正如预期的那样,这些替换不影响E2的C末端二聚化和DNA结合功能。然而,这些突变导致合成的E2反应性报告基因的反式激活减少,而HPV DNA复制不受影响。通过原子力显微镜观察了突变对DNA环化的影响。野生型E2能够产生DNA环,而所有三种突变的E2蛋白在这种能力上都存在缺陷。我们的结果表明,N末端二聚化在E2介导的反式激活中起作用,可能是通过DNA环化,这是一种远程调节基因转录的常见机制。