Kobayashi Ryosuke, Kato Akihisa, Sagara Hiroshi, Watanabe Mizuki, Maruzuru Yuhei, Koyanagi Naoto, Arii Jun, Kawaguchi Yasushi
Division of Molecular Virology, Department of Microbiology and Immunology, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
Department of Infectious Disease Control, International Research Center for Infectious Diseases, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
J Virol. 2017 Aug 24;91(18). doi: 10.1128/JVI.01068-17. Print 2017 Sep 15.
VP26 is a herpes simplex virus 1 (HSV-1) small capsomere-interacting protein. In this study, we investigated the function of VP26 in HSV-1-infected cells with the following results. (i) The VP26 null mutation significantly impaired incorporation of minor capsid protein UL25 into nucleocapsids (type C capsids) in the nucleus. (ii) The VP26 mutation caused improper localization of UL25 in discrete punctate domains containing multiple capsid proteins (e.g., the VP5 major capsid protein) in the nucleus; these domains corresponded to capsid aggregates. (iii) The VP26 mutation significantly impaired packaging of replicated viral DNA genomes into capsids but had no effect on viral DNA concatemer cleavage. (iv) The VP26 mutation reduced the frequency of type C capsids, which contain viral DNA but not scaffolding proteins, and produced an accumulation of type A capsids, which lack both viral DNA and scaffold proteins, and had no effect on accumulation of type B capsids, which lack viral DNA but retain cleaved scaffold proteins. Collectively, these results indicated that VP26 was required for efficient viral DNA packaging and proper localization of nuclear capsids. The phenotype of the VP26 null mutation was similar to that reported previously of the UL25 null mutation and of UL25 mutations that preclude UL25 binding to capsids. Thus, VP26 appeared to regulate nucleocapsid maturation by promoting incorporation of UL25 into capsids, which is likely to be required for proper capsid nuclear localization. HSV-1 VP26 has been reported to be important for viral replication and virulence in cell cultures and/or mouse models. However, little is known about the function of VP26 during HSV-1 replication, in particular, in viral nucleocapsid maturation although HSV-1 nucleocapsids are estimated to contain 900 copies of VP26. In this study, we present data suggesting that VP26 promoted packaging of HSV-1 DNA genomes into capsids by regulating incorporation of capsid protein UL25 into capsids, which was reported to increase stability of the capsid structure. We also showed that VP26 was required for proper localization of capsids in the infected cell nucleus. This is the first report showing that HSV-1 VP26 is a regulator for nucleocapsid maturation.
VP26是一种单纯疱疹病毒1型(HSV-1)小衣壳相互作用蛋白。在本研究中,我们研究了VP26在HSV-1感染细胞中的功能,结果如下:(i)VP26基因敲除突变显著损害了次要衣壳蛋白UL25在细胞核中掺入核衣壳(C型衣壳)。(ii)VP26突变导致UL25在细胞核中含有多种衣壳蛋白(如主要衣壳蛋白VP5)的离散点状结构域中定位不当;这些结构域对应于衣壳聚集体。(iii)VP26突变显著损害了复制的病毒DNA基因组包装到衣壳中,但对病毒DNA多联体切割没有影响。(iv)VP26突变降低了含有病毒DNA但不含支架蛋白的C型衣壳的频率,并导致缺乏病毒DNA和支架蛋白的A型衣壳积累,对缺乏病毒DNA但保留切割后的支架蛋白的B型衣壳积累没有影响。总体而言,这些结果表明VP26是高效病毒DNA包装和核衣壳正确定位所必需的。VP26基因敲除突变的表型与先前报道的UL25基因敲除突变以及阻止UL25与衣壳结合的UL25突变的表型相似。因此,VP26似乎通过促进UL25掺入衣壳来调节核衣壳成熟,这可能是衣壳在细胞核中正确定位所必需的。据报道,HSV-1 VP26在细胞培养物和/或小鼠模型中的病毒复制和毒力方面很重要。然而,尽管估计HSV-1核衣壳含有900个VP26拷贝,但关于VP26在HSV-1复制过程中的功能,特别是在病毒核衣壳成熟过程中的功能知之甚少。在本研究中,我们提供的数据表明,VP26通过调节衣壳蛋白UL25掺入衣壳来促进HSV-1 DNA基因组包装到衣壳中,据报道这会增加衣壳结构的稳定性。我们还表明,VP26是衣壳在受感染细胞核中正确定位所必需的。这是首次报道HSV-1 VP26是核衣壳成熟的调节因子。