核出口

Elizabeth B. Draganova, Michael K. Thorsen, E. Heldwein
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引用次数: 15

摘要

在病毒复制过程中,疱疹病毒利用一种称为核出口的独特策略,将衣壳从细胞核转运到细胞质中。这个最初的出芽步骤将一个新形成的衣壳从细胞核内部转移出来,因为它太大而无法通过核孔,穿过核膜到达核周空间。然后,核周包膜病毒粒子必须与外核膜融合,释放到细胞质中进一步成熟,在反式高尔基网络或早期核内体再次出芽,最终非裂解性地离开细胞传播感染。这第一个出芽过程是由两个保守的病毒蛋白UL31和UL34介导的,它们形成一种称为核出口复合体(NEC)的异源二聚体。本章的重点是我们所知道的NEC如何介导衣壳运输到核周空间,包括在这一萌芽事件之前和之后的步骤。此外,我们讨论了其他病毒蛋白在这一过程中的参与,以及在感染过程中如何调节nec介导的出芽。
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Nuclear Egress
During viral replication, herpesviruses utilize a unique strategy, termed nuclear egress, to translocate capsids from the nucleus into the cytoplasm. This initial budding step transfers a newly formed capsid from within the nucleus, too large to fit through nuclear pores, through the inner nuclear membrane to the perinuclear space. The perinuclear enveloped virion must then fuse with the outer nuclear membrane to be released into the cytoplasm for further maturation, undergoing budding once again at the trans-Golgi network or early endosomes, and ultimately exit the cell non-lytically to spread infection. This first budding process is mediated by two conserved viral proteins, UL31 and UL34, that form a heterodimer called the nuclear egress complex (NEC). This chapter focuses on what we know about how the NEC mediates capsid transport to the perinuclear space, including steps prior to and after this budding event. Additionally, we discuss the involvement of other viral proteins in this process and how NEC-mediated budding may be regulated during infection.
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Navigating the Cytoplasm: Delivery of the Alphaherpesvirus Genome to the Nucleus Invasion of the Nervous System Entry of Alphaherpesviruses Alpha Herpesvirus Latency and Reactivation With a Focus on Herpes Simplex Virus Nuclear Egress
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