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通过 EBV BFRF1 改善核膜动力学有助于通过自噬清除核内成分。

Improving nuclear envelope dynamics by EBV BFRF1 facilitates intranuclear component clearance through autophagy.

机构信息

School of Nursing, National Taipei University of Nursing and Health Sciences, Taipei, Taiwan.

Department of Anatomy and Cell Biology, College of Medicine, National Taiwan University, Taipei, Taiwan; and.

出版信息

FASEB J. 2018 Jul;32(7):3968-3983. doi: 10.1096/fj.201701253R. Epub 2018 Feb 26.

Abstract

Although a vesicular nucleocytoplasmic transport system is believed to exist in eukaryotic cells, the features of this pathway are mostly unknown. Here, we report that the BFRF1 protein of the Epstein-Barr virus improves vesicular transport of nuclear envelope (NE) to facilitate the translocation and clearance of nuclear components. BFRF1 expression induces vesicles that selectively transport nuclear components to the cytoplasm. With the use of aggregation-prone proteins as tools, we found that aggregated nuclear proteins are dispersed when these BFRF1-induced vesicles are formed. BFRF1-containing vesicles engulf the NE-associated aggregates, exit through from the NE, and putatively fuse with autophagic vacuoles. Chemical treatment and genetic ablation of autophagy-related factors indicate that autophagosome formation and autophagy-linked FYVE protein-mediated autophagic proteolysis are involved in this selective clearance of nuclear proteins. Remarkably, vesicular transport, elicited by BFRF1, also attenuated nuclear aggregates accumulated in neuroblastoma cells. Accordingly, induction of NE-derived vesicles by BFRF1 facilitates nuclear protein translocation and clearance, suggesting that autophagy-coupled transport of nucleus-derived vesicles can be elicited for nuclear component catabolism in mammalian cells.-Liu, G.-T., Kung, H.-N., Chen, C.-K., Huang, C., Wang, Y.-L., Yu, C.-P., Lee, C.-P. Improving nuclear envelope dynamics by EBV BFRF1 facilitates intranuclear component clearance through autophagy.

摘要

尽管人们相信真核细胞中存在着囊泡核质转运系统,但该途径的特征大多未知。在这里,我们报告称,EBV 的 BFRF1 蛋白可改善核膜(NE)的囊泡运输,以促进核成分的易位和清除。BFRF1 表达诱导选择性地将核成分运输到细胞质的囊泡。利用易于聚集的蛋白质作为工具,我们发现当形成这些由 BFRF1 诱导的囊泡时,聚集的核蛋白会分散。含有 BFRF1 的囊泡吞噬与 NE 相关的聚集物,通过 NE 出芽,并与自噬小泡融合。化学处理和自噬相关因子的遗传消融表明,自噬体的形成和自噬相关 FYVE 蛋白介导的自噬蛋白水解参与了这种核蛋白的选择性清除。值得注意的是,BFRF1 引发的囊泡运输也减轻了神经母细胞瘤细胞中积累的核聚集物。因此,BFRF1 诱导的 NE 衍生囊泡的运输促进了核蛋白的易位和清除,表明通过自噬偶联的核衍生囊泡运输可以促进哺乳动物细胞中核成分的分解代谢。

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