首页> 美国卫生研究院文献>Journal of Virology >Nuclear Import of Epstein-Barr Virus Nuclear Antigen 1 Mediated by NPI-1 (Importin α5) Is Up- and Down-Regulated by Phosphorylation of the Nuclear Localization Signal for Which Lys379 and Arg380 Are Essential
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Nuclear Import of Epstein-Barr Virus Nuclear Antigen 1 Mediated by NPI-1 (Importin α5) Is Up- and Down-Regulated by Phosphorylation of the Nuclear Localization Signal for Which Lys379 and Arg380 Are Essential

机译:由NPI-1(导入素α5)介导的爱泼斯坦-巴尔病毒核抗原1的核导入受Lys379和Arg380必不可少的核定位信号的磷酸化作用而上调和下调。

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摘要

Epstein-Barr virus (EBV) nuclear antigen 1 (EBNA-1) is essential for replication of episomal EBV DNAs and maintenance of latency. Multifunctional EBNA-1 is phosphorylated, but the significance of EBNA-1 phosphorylation is not known. Here, we examined the effects on nuclear translocation of Ser phosphorylation of the EBNA-1 nuclear localization signal (NLS) sequence, 379Lys-Arg-Pro-Arg-Ser-Pro-Ser-Ser386. We found that Lys379Ala and Arg380Ala substitutions greatly reduced nuclear transport and steady-state levels of green fluorescent protein (GFP)-EBNA1, whereas Pro381Ala, Arg382Ala, Pro384Ala, and Glu378Ala substitutions did not. Microinjection of modified EBNA-1 NLS peptide-inserted proteins and NLS peptides cross-linked to bovine serum albumin (BSA) showed that Ala substitution for three NLS Ser residues reduced the efficiency of nuclear import. Similar microinjection analyses demonstrated that phosphorylation of Ser385 accelerated the rate of nuclear import, but phosphorylation of Ser383 and Ser386 reduced it. However, transfection analyses of GFP-EBNA1 mutants with the Ser-to-Ala substitution causing reduced nuclear import efficiency did not result in a decrease in the nuclear accumulation level of EBNA-1. The results suggest dynamic nuclear transport control of phosphorylated EBNA-1 proteins, although the nuclear localization level of EBNA-1 that binds to cellular chromosomes and chromatin seems unchanged. The karyopherin α NPI-1 (importin α5), a nuclear import adaptor, bound more strongly to Ser385-phosphorylated NLS than to any other phosphorylated or nonphosphorylated forms. Rch1 (importin α1) bound only weakly and Qip1 (importin α3) did not bind to the Ser385-phosphorylated NLS. These findings suggest that the amino-terminal 379Lys-Arg380 is essential for the EBNA-1 NLS and that Ser385 phosphorylation up-regulates nuclear transport efficiency of EBNA-1 by increasing its binding affinity to NPI-1, while phosphorylation of Ser386 and Ser383 down-regulates it.
机译:爱泼斯坦巴尔病毒(EBV)核抗原1(EBNA-1)对于游离EBV DNA复制和维持潜伏期至关重要。多功能EBNA-1被磷酸化,但是EBNA-1磷酸化的意义尚不清楚。在这里,我们检查了EBNA-1核定位信号(NLS)序列379Lys-Arg-Pro-Arg-Ser-Pro-Ser-Ser386对Ser磷酸化的核易位的影响。我们发现,Lys379Ala和Arg380Ala替代大大降低了绿色荧光蛋白(GFP)-EBNA1的核转运和稳态水平,而Pro381Ala,Arg382Ala,Pro384Ala和Glu378Ala替代却没有。显微注射插入了EBNA-1 NLS肽的蛋白质和与牛血清白蛋白(BSA)交联的NLS肽表明,用Ala替代三个NLS Ser残基会降低核输入的效率。相似的显微注射分析表明,Ser385的磷酸化促进了核输入的速率,但Ser383和Ser386的磷酸化降低了其进口。但是,用Ser-to-Ala取代引起核输入效率降低的GFP-EBNA1突变体的转染分析并未导致EBNA-1的核积累水平降低。结果表明磷酸化EBNA-1蛋白的动态核转运控制,尽管与细胞染色体和染色质结合的EBNA-1的核定位水平似乎没有变化。核导入适配器核蛋白αNPI-1(进口蛋白α5)与Ser385磷酸化的NLS的结合比与其他任何磷酸化或非磷酸化的形式更牢固地结合。 Rch1(重要α1)仅弱结合,而Qip1(重要α3)不与Ser385磷酸化的NLS结合。这些发现表明氨基末端379Lys-Arg380对于EBNA-1 NLS是必不可少的,并且Ser385磷酸化通过增加其对NPI-1的结合亲和力来上调EBNA-1的核转运效率,而Ser386和Ser383的磷酸化下降-调节它。

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