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首页> 外文期刊>The Journal of biological chemistry >Herpes Simplex Virus ICP27 Protein Directly Interacts with the Nuclear Pore Complex through Nup62, Inhibiting Host Nucleocytoplasmic Transport Pathways
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Herpes Simplex Virus ICP27 Protein Directly Interacts with the Nuclear Pore Complex through Nup62, Inhibiting Host Nucleocytoplasmic Transport Pathways

机译:单纯疱疹病毒ICP27蛋白通过NUP62直接与核孔隙络合物相互作用,抑制宿主核细胞质输送途径

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The herpes simplex virus ICP27 protein is important for the expression and nuclear export of viral mRNAs. Although several binding sites have been mapped along the ICP27 sequence for various RNA and protein partners, including the transport receptor TAP of the host cell nuclear transport machinery, several aspects of ICP27 trafficking through the nuclear pore complex remain unclear. We investigated if ICP27 could interact directly with the nuclear pore complex itself, finding that ICP27 directly binds the core nucleoporin Nup62. This is confirmed through co-immunoprecipitation and in vitro binding assays with purified components. Mapping with ICP27 deletion and point mutants further shows that the interaction requires sequences in both the N and C termini of ICP27. Expression of wild type ICP27 protein inhibited both classical, importin α/β-dependent and transportin-dependent nuclear import. In contrast, an ICP27 point mutant that does not interact with Nup62 had no such inhibitory effect. We suggest that ICP27 association with Nup62 provides additional binding sites at the nuclear pore for ICP27 shuttling, thus supporting ICP27-mediated transport. We propose that ICP27 competes with some host cell transport receptors for binding, resulting in inhibition of those host transport pathways.
机译:单纯疱疹病毒ICP27蛋白对病毒MRNA的表达和核导出是重要的。虽然沿着ICP27序列映射了各种RNA和蛋白质合作伙伴的几种结合位点,但包括宿主核运输机械的运输受体水龙头,但通过核孔隙络合物的ICP27贩运的若干方面仍不清楚。我们调查了ICP27可以直接与核孔隙复合物自身相互作用,发现ICP27直接结合核心核致核苷酸NUP62。这通过具有纯化组分的共免疫沉淀和体外结合测定来证实。用ICP27缺失和点突变体的映射进一步表明,相互作用需要ICP27的N和C Termini的序列。野生型ICP27蛋白的表达抑制了古典,分类α/β依赖性和转运依赖性核进口。相反,不与NUP62相互作用的ICP27点突变体没有这种抑制作用。我们建议使用与NUP62的ICP27关联在核孔中提供额外的粘合位点,用于ICP27 Shuttling,从而支持ICP27介导的运输。我们提出ICP27与一些宿主细胞传输受体竞争结合,导致抑制这些宿主运输途径。

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