Wallaschek Nina, Gravel Annie, Flamand Louis, Kaufer Benedikt B
Institut für Virologie, Freie Universität Berlin, Robert von Ostertag-Straße 7-13, 14163 Berlin, Germany.
Division of Infectious Disease and Immunity, CHU de Québec Research Center, Quebec city, Quebec G1V 4G2, Canada.
J Gen Virol. 2016 Aug;97(8):1899-1903. doi: 10.1099/jgv.0.000502. Epub 2016 May 11.
Human herpesvirus 6 (HHV-6) can integrate its genome into the telomeres of host chromosomes and is present in the germline of about 1 % of the human population. HHV-6 encodes a putative integrase U94 that possesses all molecular functions required for recombination including DNA-binding, ATPase, helicase and nuclease activity, and was hypothesized by many researchers to facilitate integration ever since the discovery of HHV-6 integration. However, analysis of U94 in the virus context has been hampered by the lack of reverse-genetic systems and efficient integration assays. Here, we addressed the role of U94 and the cellular recombinase Rad51 in HHV-6 integration. Surprisingly, we could demonstrate that HHV-6 efficiently integrated in the absence of U94 using a new quantitative integration assay. Additional inhibition of the cellular recombinase Rad51 had only a minor impact on virus integration. Our results shed light on this complex integration mechanism that includes factors beyond U94 and Rad51.
人类疱疹病毒6型(HHV - 6)可将其基因组整合到宿主染色体的端粒中,约1%的人类群体的种系中存在该病毒。HHV - 6编码一种假定的整合酶U94,它具有重组所需的所有分子功能,包括DNA结合、ATP酶、解旋酶和核酸酶活性,自HHV - 6整合被发现以来,许多研究人员推测它有助于整合。然而,由于缺乏反向遗传系统和有效的整合检测方法,在病毒环境中对U94的分析受到了阻碍。在这里,我们研究了U94和细胞重组酶Rad51在HHV - 6整合中的作用。令人惊讶的是,我们使用一种新的定量整合检测方法证明,在没有U94的情况下HHV - 6仍能高效整合。对细胞重组酶Rad51的进一步抑制对病毒整合只有轻微影响。我们的结果揭示了这种复杂的整合机制,其中包括U94和Rad51以外的因素。