首页> 美国卫生研究院文献>Journal of Virology >Amino Acid Substitutions Reveal Distinct Functions of Serine 186 of the ZEBRA Protein in Activation of Early Lytic Cycle Genes and Synergy with the Epstein-Barr Virus R Transactivator
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Amino Acid Substitutions Reveal Distinct Functions of Serine 186 of the ZEBRA Protein in Activation of Early Lytic Cycle Genes and Synergy with the Epstein-Barr Virus R Transactivator

机译:氨基酸取代揭示了斑马蛋白186的丝氨酸186在激活早期溶血循环基因中的独特功能以及与爱泼斯坦-巴尔病毒R反式激活因子的协同作用

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摘要

The ZEBRA protein mediates the switch between the latent and lytic life cycles of Epstein-Barr virus. Z(S186A), a point mutant in ZEBRA’s basic domain in which serine 186 is changed to alanine, is unable to induce expression of lytic cycle mRNAs or proteins from the latent EBV genome even though it retains the ability to activate transcription from reporters bearing known ZEBRA-responsive promoters (A. L. Francis et al., J. Virol. 71:3054–3061, 1997). We now describe three distinct phenotypes of ZEBRA mutants bearing different amino acid substitutions at S186. These phenotypes are based on the capacity of the mutants to activate expression of the BRLF1 and BMRF1 genes, which are targets of ZEBRA’s action, and to synergize with the BRLF1 gene product Rta (R transactivator) in activating expression of downstream genes. One mutant class, represented by Z(S186T), was similar to the wild type, although reduced in the capacity to activate BRLF1 and BMRF1 early lytic cycle genes from the latent virus. A second class, represented by Z(S186C) and Z(S186G), was impaired in transcriptional activation, unable to activate early lytic cycle products from the latent virus, and not rescued by overexpression of Rta. A third class, Z(S186A), although unable by itself to activate BRLF1 or other lytic cycle genes, synergized with Rta. Rta rescued the capacity of Z(S186A) to activate the BMRF1 early lytic cycle gene from the latent virus. All mutant classes bound to DNA in vitro, although their capacity to bind to different ZEBRA response elements varied. Serine 186 of ZEBRA is a critical residue that is required for the distinct activities of induction of BRLF1 expression and for synergy with Rta. Since only Z(S186T) among the mutants behaved similarly to the wild type, activation of BRLF1 likely requires phosphorylation of S186. However, since Z(S186A) could synergize with Rta, synergy with Rta does not appear to be dependent on phosphorylation of S186. S186 likely mediates DNA recognition on the BRLF1 promoter in the context of the latent virus, protein-protein interactions, or both. The Z(S186) mutants define the amino acid side chains required for these functions.
机译:ZEBRA蛋白介导爱泼斯坦-巴尔病毒的潜伏期和裂解生命周期之间的转换。 Z(S186A)是ZEBRA基本域中的一个点突变体,其中丝氨酸186变为丙氨酸,尽管它保留了激活来自已知报道基因的转录的能力,但它不能诱导潜在EBV基因组的裂解周期mRNAs或蛋白质表达。 ZEBRA应答性启动子(AL Francis等,J.Virol.71:3054-3061,1997)。现在,我们描述了在S186处带有不同氨基酸取代的ZEBRA突变体的三种不同表型。这些表型基于突变体激活BRLF1和BMRF1基因(它们是ZEBRA作用的靶标)的表达以及与BRLF1基因产物Rta(R反式激活因子)协同激活下游基因表达的能力。一个由Z(S186T)代表的突变体类与野生型相似,但其激活潜伏病毒的BRLF1和BMRF1早期裂解周期基因的能力降低了。以Z(S186C)和Z(S186G)为代表的第二类在转录激活中受损,无法激活潜伏病毒的早期裂解周期产物,也不能通过Rta的过表达来挽救。第三类,Z(S186A),尽管本身不能激活BRLF1或其他裂解周期基因,但与Rta协同作用。 Rta挽救了Z(S186A)激活潜在病毒中BMRF1早期裂解周期基因的能力。尽管它们与不同的ZEBRA反应元件结合的能力各不相同,但所有突变体类别都在体外与DNA结合。 ZEBRA的丝氨酸186是关键的残基,其是诱导BRLF1表达的独特活性以及与Rta协同作用所必需的。由于突变体中只有Z(S186T)表现与野生型相似,因此BRLF1的激活可能需要S186的磷酸化。但是,由于Z(S186A)可以与Rta协同作用,因此与Rta的协同作用似乎并不依赖于S186的磷酸化。在潜在病毒,蛋白质-蛋白质相互作用或两者同时存在的情况下,S186可能介导BRLF1启动子的DNA识别。 Z(S186)突变体定义了这些功能所需的氨基酸侧链。

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