Heinrich-Pette-Institute, Leibniz Institute for Experimental Virology, Hamburg, Germany.
Virus Res. 2013 Dec 5;178(1):53-62. doi: 10.1016/j.virusres.2013.05.010. Epub 2013 Jun 1.
Adaptation of the viral polymerase to host factors plays an important role in interspecies transmission of H5N1 viruses. Several adaptive mutations have been identified that, in general, determine not only host range, but also pathogenicity and transmissibility of the virus. The available evidence indicates that most of these mutations are found in the PB2 subunit of the polymerase. Particularly prominent mutations are located in the C-terminal domain of PB2 involving the amino acid exchanges E627K and D701N. Both mutations, that are also responsible for the adaptation of other avian viruses to mammalian hosts, have been described in human H5N1 isolates. In animal models, it could be demonstrated that they enhance pathogenicity in mice and induce contact transmission in guinea pigs. Mutation E627K has also been identified as a determinant of air-borne H5N1 transmission in ferrets. We are only beginning to understand the underlying mechanisms at the molecular level. Thus, mutation D701N promotes importin-α mediated nuclear transport in mammalian cells. Mutation E627K also enhances the replication rate in an importin-α dependent fashion in mammalian cells, yet without affecting nuclear entry of PB2. Numerous other adaptive mutations, some of which compensate for the lack of PB2 E627K, have been observed in PB2 as well as in the polymerase subunit PB1, the nucleoprotein NP, and the nuclear export protein NEP (NS2).
病毒聚合酶对宿主因子的适应在 H5N1 病毒的种间传播中起着重要作用。已经确定了几种适应性突变,这些突变通常不仅决定了宿主范围,还决定了病毒的致病性和传染性。现有证据表明,这些突变中的大多数都存在于聚合酶的 PB2 亚基中。特别突出的突变位于 PB2 的 C 末端结构域,涉及氨基酸交换 E627K 和 D701N。这两种突变也负责其他禽病毒适应哺乳动物宿主,已在人类 H5N1 分离株中描述过。在动物模型中,已经证明它们增强了对小鼠的致病性,并在豚鼠中诱导了接触传播。突变 E627K 也被确定为在雪貂中空气传播 H5N1 的决定因素。我们才刚刚开始从分子水平上了解潜在的机制。因此,突变 D701N 促进了哺乳动物细胞中导入蛋白-α介导的核转运。突变 E627K 还以导入蛋白-α依赖的方式增强了在哺乳动物细胞中的复制率,但不影响 PB2 的核进入。在 PB2 以及聚合酶亚基 PB1、核蛋白 NP 和核输出蛋白 NEP(NS2)中也观察到了许多其他适应性突变,其中一些突变补偿了 PB2 E627K 的缺乏。