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牛疱疹病毒 1 感染细胞中 VP22 的细胞内运输。

Intracellular trafficking of VP22 in bovine herpesvirus-1 infected cells.

机构信息

Vaccine and Infectious Disease Organization, University of Saskatchewan, 120 Veterinary Road, Saskatoon, SK, Canada.

出版信息

Virology. 2010 Jan 20;396(2):189-202. doi: 10.1016/j.virol.2009.10.022. Epub 2009 Nov 18.

Abstract

The intracellular trafficking of different VP22-enhanced yellow fluorescent protein (EYFP) fusion proteins expressed by bovine herpesvirus-1 (BHV-1) recombinants was examined by live-cell imaging. Our results demonstrate that (i) the fusion of EYFP to the C terminus of VP22 does not alter the trafficking of the protein in infected cells, (ii) VP22 expressed during BHV-1 infection translocates to the nucleus through three different pathways, namely early mitosis-dependent nuclear translocation, late massive nuclear translocation that follows a prolonged cytoplasmic stage of the protein in non-mitotic cells, and accumulation of a small subset of VP22 in discrete dot-like nuclear domains during its early cytoplasmic stage, (iii) the addition of the SV40 large-T-antigen nuclear localization signal (NLS) to VP22-EYFP abrogates its early cytoplasmic stage, and (iv) the VP22 (131)PRPR(134) NLS is not required for the late massive nuclear translocation of the protein, but this motif is essential for the targeting of VP22 to discrete dot-like nuclear domains during the early cytoplasmic stage. These results show that the amount of VP22 in the nucleus is precisely regulated at different stages of BHV-1 infection and suggest that the early pathways of VP22 nuclear accumulation may be more relevant to the infection process as the late massive nuclear influx starts when most of the viral progeny has already emerged from the cell.

摘要

通过活细胞成像技术研究了不同 VP22 增强型黄色荧光蛋白 (EYFP) 融合蛋白在牛疱疹病毒-1 (BHV-1) 重组体中表达后的细胞内运输。我们的结果表明:(i) EYFP 与 VP22 的 C 末端融合不会改变感染细胞中蛋白的运输;(ii) 在 BHV-1 感染过程中表达的 VP22 通过三种不同途径转运到核内,即早期有丝分裂依赖性核内转运、晚期大量核内转运,随后是蛋白在非有丝分裂细胞中的细胞质阶段延长,以及在其早期细胞质阶段 VP22 在离散点状核域中的一小部分积累;(iii) 将 SV40 大 T 抗原核定位信号 (NLS) 添加到 VP22-EYFP 中会破坏其早期细胞质阶段;(iv) VP22(131)PRPR(134)NLS 不是该蛋白晚期大量核内转运所必需的,但该基序对于 VP22 在早期细胞质阶段靶向离散点状核域是必需的。这些结果表明,在 BHV-1 感染的不同阶段,VP22 在核内的数量受到精确调控,并表明 VP22 核积累的早期途径可能与感染过程更相关,因为当大部分病毒子代已经从细胞中逸出时,晚期大量核内涌入才开始。

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