首页> 美国卫生研究院文献>Journal of Virology >Phosphoacceptor Site S173 in the Regulatory Domain of Epstein-Barr Virus ZEBRA Protein Is Required for Lytic DNA Replication but Not for Activation of Viral Early Genes
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Phosphoacceptor Site S173 in the Regulatory Domain of Epstein-Barr Virus ZEBRA Protein Is Required for Lytic DNA Replication but Not for Activation of Viral Early Genes

机译:爱泼斯坦-巴尔病毒ZEBRA蛋白调控域中的磷酸受体位点S173是裂解DNA复制所必需的但对于病毒早期基因的激活不是必需的

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摘要

The Epstein-Barr virus ZEBRA protein controls the viral lytic cycle. ZEBRA activates the transcription of viral genes required for replication. ZEBRA also binds to oriLyt and interacts with components of the viral replication machinery. The mechanism that differentiates the roles of ZEBRA in regulation of transcription and initiation of lytic replication is unknown. Here we show that S173, a residue in the regulatory domain, is obligatory for ZEBRA to function as an origin binding protein but is dispensable for its role as a transcriptional activator of early genes. Serine-to-alanine substitution of this residue, which prevents phosphorylation of S173, resulted in a threefold reduction in the DNA binding affinity of ZEBRA for oriLyt, as assessed by chromatin immunoprecipitation. An independent assay based on ZEBRA solubility demonstrated a marked defect in DNA binding by the Z(S173A) mutant. The phenotype of a phosphomimetic mutant, the Z(S173D) mutant, was similar to that of wild-type ZEBRA. Our findings suggest that phosphorylation of S173 promotes viral replication by enhancing ZEBRA's affinity for DNA. The results imply that stronger DNA binding is required for ZEBRA to activate replication than that required to activate transcription.
机译:爱泼斯坦-巴尔病毒ZEBRA蛋白控制病毒的裂解周期。 ZEBRA激活复制所需的病毒基因的转录。 ZEBRA还与oriLyt结合并与病毒复制机制的组件相互作用。区分ZEBRA在转录调控和裂解复制起始中的作用的机制尚不清楚。在这里,我们显示S173是调控域中的一个残基,对ZEBRA来说是强制性的,它起着起点结合蛋白的作用,但由于其作为早期基因的转录激活子而起着重要作用。如通过染色质免疫沉淀所评估的,此残基的丝氨酸至丙氨酸取代阻止了S173的磷酸化,导致ZEBRA对oriLyt的DNA结合亲和力降低了三倍。基于ZEBRA溶解度的独立分析表明Z(S173A)突变体在DNA结合中存在明显缺陷。拟磷酸化突变体Z(S173D)突变体的表型与野生型ZEBRA相似。我们的发现表明,S173的磷酸化可通过增强ZEBRA对DNA的亲和力来促进病毒复制。结果表明,与激活转录相比,ZEBRA激活复制需要更强的DNA结合。

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