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首页> 外文期刊>Biochemistry >An importin alpha/beta-recognized bipartite nuclear localization signal mediates targeting of the human herpes simplex virus type 1 DNA polymerase catalytic subunit pUL30 to the nucleus
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An importin alpha/beta-recognized bipartite nuclear localization signal mediates targeting of the human herpes simplex virus type 1 DNA polymerase catalytic subunit pUL30 to the nucleus

机译:Importinα/β识别的双核核定位信号介导人单纯疱疹病毒1型DNA聚合酶催化亚基pUL30靶向细胞核

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摘要

Although the 1235 amino acids human herpes simplex virus type 1 (HSV-1) DNA polymerase catalytic subunit, pUL30, is essential for HSV-1 replication in the nucleus of host cells, little information is available regarding its nuclear import mechanism. The present study addresses this issue directly, characterizing pUL30's nuclear import pathway for the first time using quantitative confocal laser scanning microscopy (CLSM) on living cells, and fluorescent binding assays. In addition to a previously described nuclear localization signal (NLS) located within the pUL30 binding site for the polymerase accessory protein (PAP) pUL42, that appears to be dispensable for nuclear targeting, pUL30 possesses three putative basic NLSs. Intriguingly, the core of pUL30-NLS2 (residues 1114-1120) is highly homologous to that of the recently described NLS, similarly located upstream of the PAP binding site, of the human cytomee,alovirus(HCMV) DNA polymerase catalytic subunit, pUL54. Here we show for the first time that pUL30-NLS2 itself is only partially functional in terms of nuclear import due to residue P-1118 present in position 3 of the NLS core. Intriguingly, pUL30-NLS2 together with pUL30-NLS3 (residues 1133-1136) represents a fully functional bipartite NLS (pUL30-NLSbip), required for nuclear targeting of pUL30, and able to confer nuclear localization on heterologous proteins by conferring high-affinity interaction with the importin (IMP) alpha/beta heterodimer. Since nuclear targeting of HSV-1 proteins forming the replication fork is crucial for viral replication, the pUL30-NLSbip emerges for the first time as a viable therapeutic target.
机译:虽然1235个氨基酸的人类单纯疱疹病毒1型(HSV-1)DNA聚合酶催化亚基pUL30对于HSV-1在宿主细胞核中的复制是必不可少的,但有关其核导入机制的信息很少。本研究直接解决了这个问题,首次在活细胞上使用定量共聚焦激光扫描显微镜(CLSM)表征了pUL30的核输入途径,并进行了荧光结合测定。除了先前描述的位于聚合酶辅助蛋白(PAP)pUL42的pUL30结合位点内的核定位信号(NLS)(似乎对于核靶向而言是必需的)之外,pUL30还具有三个假定的基本NLS。有趣的是,pUL30-NLS2的核心(残基1114-1120)与最近描述的NLS的核心高度同源,同样位于人细胞因子,铝病毒(HCMV)DNA聚合酶催化亚基pUL54的PAP结合位点的上游。在这里,我们首次展示了pUL30-NLS2本身在核输入方面仅部分起作用,这是因为NLS核3位上存在残基P-1118。有趣的是,pUL30-NLS2与pUL30-NLS3(残基1133-1136)一起代表了功能完整的两部分NLS(pUL30-NLSbip),这是pUL30进行核靶向所必需的,并且能够通过赋予高亲和力相互作用而赋予异源蛋白核定位与importin(IMP)α/β异二聚体。由于形成复制叉的HSV-1蛋白的核靶向对于病毒复制至关重要,因此pUL30-NLSbip首次成为可行的治疗靶标。

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