Guo Hong, Ding Qiong, Lin Fusen, Pan Weiwei, Lin Jianyin, Zheng Alan C
State Key Laboratory of Virology, Molecular Virology and Viral Immunology Research Group, Wuhan Institute of Virology, Chinese Academy of Sciences, 44 Xiaohongshan, Wuchang, Wuhan, Hubei 430071, PR China.
Virus Res. 2009 Nov;145(2):312-20. doi: 10.1016/j.virusres.2009.07.024. Epub 2009 Aug 12.
Bovine herpesvirus-1 infected cell protein 27 (BICP27) was detected predominantly in the nucleolus. The open reading frame of BICP27 was fused with the enhanced yellow fluorescent protein (EYFP) gene to investigate its subcellular localization in live cells and BICP27 was able to direct monomeric, dimeric or trimeric EYFP exclusively to the nucleolus. By constructing a series of deletion mutants, the putative nuclear localization signal (NLS) and nucleolar localization signal (NoLS) were mapped to (81)RRAR(84) and (86)RPRRPRRRPRRR(97) respectively. Specific deletion of the putative NLS, NoLS or both abrogated nuclear localization, nucleolar localization or both respectively. Furthermore, NLS was able to direct trimeric EYFP predominantly to the nucleus but excluded from the nucleolus, whereas NoLS targeted trimeric EYFP primarily to the nucleus, and enriched in the nucleolus with faint staining in the cytoplasm. NLS+NoLS directed trimeric EYFP predominantly to the nucleolus with faint staining in the nucleus. Moreover, deletion of NLS+NoLS abolished the transactivating activity of BICP27 on gC promoter, whereas deletion of either NLS or NoLS did not. The study demonstrated that BICP27 is a nucleolar protein, adding BICP27 to the growing list of transactivators which localize to the nucleolus.
牛疱疹病毒1型感染细胞蛋白27(BICP27)主要在核仁中被检测到。将BICP27的开放阅读框与增强型黄色荧光蛋白(EYFP)基因融合,以研究其在活细胞中的亚细胞定位,结果显示BICP27能够将单体、二聚体或三聚体EYFP特异性地导向核仁。通过构建一系列缺失突变体,推定的核定位信号(NLS)和核仁定位信号(NoLS)分别被定位到(81)RRAR(84)和(86)RPRRPRRRPRRR(97)。推定的NLS、NoLS或两者的特异性缺失分别消除了核定位、核仁定位或两者。此外,NLS能够将三聚体EYFP主要导向细胞核,但排除在核仁之外,而NoLS将三聚体EYFP主要靶向细胞核,并在核仁中富集,细胞质中有微弱染色。NLS + NoLS将三聚体EYFP主要导向核仁,细胞核中有微弱染色。此外,删除NLS + NoLS消除了BICP27对gC启动子的反式激活活性,而删除NLS或NoLS则没有。该研究表明BICP27是一种核仁蛋白,使BICP27加入到定位于核仁的反式激活因子不断增加的列表中。