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ICP27 即刻早期蛋白在单纯疱疹病毒 1 和 2 对莱普霉素 B 敏感性差异中的作用。

Role of immediate early protein ICP27 in the differential sensitivity of herpes simplex viruses 1 and 2 to leptomycin B.

机构信息

Department of Microbiology, University of Minnesota Medical School, Minneapolis, Minnesota, USA.

出版信息

J Virol. 2013 Aug;87(16):8940-51. doi: 10.1128/JVI.00633-13. Epub 2013 Jun 5.

Abstract

Leptomycin B (LMB) is a highly specific inhibitor of CRM1, a cellular karyopherin-β that transports nuclear export signal-containing proteins from the nucleus to the cytoplasm. Previous work has shown that LMB blocks herpes simplex virus 1 (HSV-1) replication in Vero cells and that certain mutations in viral immediate early protein ICP27 can confer LMB resistance. However, little is known of the molecular mechanisms involved. Here we report that HSV-2, a close relative of HSV-1, is naturally resistant to LMB. To see whether the ICP27 gene determines this phenotypic difference, we generated an HSV-1 mutant that expresses the HSV-2 ICP27 instead of the HSV-1 protein. This recombinant was fully sensitive to LMB, indicating that one or more other viral genes must be important in determining HSV-2's LMB-resistant phenotype. In additional work, we report several findings that shed light on how HSV-1 ICP27 mutations can confer LMB resistance. First, we show that LMB treatment of HSV-1-infected cells leads to suppression of late viral protein synthesis and a block to progeny virion release. Second, we identify a novel type of ICP27 mutation that can confer LMB resistance, that being the addition of a 100-residue amino-terminal affinity purification tag. Third, by studying infections where both LMB-sensitive and LMB-resistant forms of ICP27 are present, we show that HSV-1's sensitivity to LMB is dominant to its resistance. Together, our results suggest a model in which the N-terminal portion of ICP27 mediates a nonessential activity that interferes with HSV-1 replication when CRM1 is inactive. We suggest that LMB resistance mutations weaken or abrogate this activity.

摘要

莱普霉素 B(LMB)是一种细胞胞质溶质β运载体 CRM1 的高度特异性抑制剂,该载体将含有核输出信号的蛋白质从细胞核运送到细胞质。先前的工作表明,LMB 可阻断 Vero 细胞中的单纯疱疹病毒 1(HSV-1)复制,并且病毒早期即刻蛋白 ICP27 中的某些突变可以赋予 LMB 抗性。但是,涉及的分子机制知之甚少。在这里,我们报告说,HSV-2,一种与 HSV-1 密切相关的病毒,天然对 LMB 具有抗性。为了观察 ICP27 基因是否决定了这种表型差异,我们生成了一种表达 HSV-2 ICP27 而不是 HSV-1 蛋白的 HSV-1 突变体。该重组体对 LMB 完全敏感,表明一个或多个其他病毒基因对于确定 HSV-2 的 LMB 抗性表型非常重要。在进一步的研究中,我们报告了一些发现,这些发现阐明了 HSV-1 ICP27 突变如何赋予 LMB 抗性。首先,我们表明 LMB 处理 HSV-1 感染的细胞会导致晚期病毒蛋白合成受到抑制,并阻止子代病毒粒子的释放。其次,我们鉴定出一种新的 ICP27 突变类型,该突变可以赋予 LMB 抗性,即添加 100 个残基的氨基末端亲和纯化标签。第三,通过研究同时存在 LMB 敏感和 LMB 抗性 ICP27 形式的感染,我们表明 HSV-1 对 LMB 的敏感性对其抗性具有优势。总的来说,我们的结果表明,ICP27 的 N 端部分介导一种非必需的活性,当 CRM1 失活时,该活性会干扰 HSV-1 的复制。我们认为 LMB 抗性突变削弱或消除了这种活性。

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