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单纯疱疹病毒感染细胞中的核孔组成与门控

Nuclear pore composition and gating in herpes simplex virus-infected cells.

作者信息

Hofemeister Helmut, O'Hare Peter

机构信息

Marie Curie Research Institute, The Chart, Oxted, Surrey RH8 0TL, United Kingdom.

出版信息

J Virol. 2008 Sep;82(17):8392-9. doi: 10.1128/JVI.00951-08. Epub 2008 Jun 18.

Abstract

The mechanism by which herpes simplex virus (HSV) exits the nucleus remains a matter of controversy. The generally accepted route proposes that capsids exit via primary envelopment at the inner nuclear membrane and subsequent fusion of this primary particle with the outer nuclear membrane to gain capsid entry to the cytoplasm. However, recent observations indicate that HSV may induce gross morphological alterations of nuclear pores, resulting in the loss of normal pores and the appearance of dilated gaps in the nuclear membrane of up to several 100 nm. On this basis, it was proposed that a main route of capsid exit from the nucleus is directly through these altered pores. Here, we examine the biochemical composition of some of the major nuclear pore components in uninfected and HSV-infected cells. We show that total levels of major nucleoporins and their sedimentation patterns in density gradients remain largely unchanged up to 18 h after HSV infection. Some alteration in modification of one nucleoporin, Nup358/RanBP2, was observed during enrichment with anti-nucleoporin antibody and probing for O glycosylation. In addition, we examine functional gating within the nucleus in live cells, using microinjection of labeled dextran beads and a recombinant virus expressing GFP-VP16 to track the progress of infection. The nuclear permeability barrier for molecules bigger than 70 kDa remained intact throughout infection. Thus, in a functional assay in live cells, we find no evidence for gross perturbation to the gating of nuclear pores, although this might not exclude a small population of modified pores.

摘要

单纯疱疹病毒(HSV)离开细胞核的机制仍存在争议。普遍接受的途径认为,衣壳通过在内核膜处的初级包膜作用离开,随后该初级颗粒与外核膜融合,使衣壳进入细胞质。然而,最近的观察表明,HSV可能会诱导核孔出现明显的形态改变,导致正常核孔消失,核膜上出现直径达数百纳米的扩张间隙。在此基础上,有人提出衣壳从细胞核中出来的主要途径是直接通过这些改变的核孔。在这里,我们研究了未感染和HSV感染细胞中一些主要核孔成分的生化组成。我们发现,在HSV感染后长达18小时内,主要核孔蛋白的总量及其在密度梯度中的沉降模式基本保持不变。在用抗核孔蛋白抗体富集并检测O-糖基化过程中,观察到一种核孔蛋白Nup358/RanBP2的修饰有一些变化。此外,我们通过显微注射标记的葡聚糖珠和表达GFP-VP16的重组病毒来追踪感染进程,研究了活细胞内核的功能门控。在整个感染过程中,大于70 kDa的分子的核渗透屏障保持完整。因此,在活细胞的功能测定中,我们没有发现核孔门控受到严重干扰的证据,尽管这可能不排除一小部分修饰的核孔。

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