Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany.
Friedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany; email:
Annu Rev Virol. 2023 Sep 29;10(1):305-323. doi: 10.1146/annurev-virology-111821-105518. Epub 2023 Apr 11.
Nuclear egress of herpesvirus capsids across the intact nuclear envelope is an exceptional vesicle-mediated nucleocytoplasmic translocation resulting in the delivery of herpesvirus capsids into the cytosol. Budding of the (nucleo)capsid at and scission from the inner nuclear membrane (INM) is mediated by the viral nuclear egress complex (NEC) resulting in a transiently enveloped virus particle in the perinuclear space followed by fusion of the primary envelope with the outer nuclear membrane (ONM). The dimeric NEC oligomerizes into a honeycomb-shaped coat underlining the INM to induce membrane curvature and scission. Mutational analyses complemented structural data defining functionally important regions. Questions remain, including where and when the NEC is formed and how membrane curvature is mediated, vesicle formation is regulated, and directionality is secured. The composition of the primary enveloped virion and the machinery mediating fusion of the primary envelope with the ONM is still debated. While NEC-mediated budding apparently follows a highly conserved mechanism, species and/or cell type-specific differences complicate understanding of later steps.
疱疹病毒衣壳穿过完整核膜的核出运是一种特殊的囊泡介导的核质转运,导致疱疹病毒衣壳进入细胞质。(核)衣壳在核内膜(INM)上出芽和从核内膜上分离是由病毒核出运复合物(NEC)介导的,导致在核周空间中形成暂时包膜的病毒颗粒,然后初级包膜与外核膜(ONM)融合。二聚体 NEC 在核内膜下形成蜂窝状外壳,诱导膜弯曲和分离。突变分析补充了定义功能重要区域的结构数据。仍存在一些问题,包括 NEC 在哪里以及何时形成,如何介导膜曲率,囊泡形成如何受到调节,以及如何确保方向性。初级包膜病毒粒子的组成和介导初级包膜与 ONM 融合的机制仍存在争议。虽然 NEC 介导的出芽显然遵循高度保守的机制,但种间和/或细胞类型特异性差异使对后期步骤的理解复杂化。