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爱泼斯坦-巴尔病毒ZEBRA蛋白碱性结构域中单个丝氨酸的改变,使其转录激活功能与潜伏期破坏功能相分离。

Alteration of a single serine in the basic domain of the Epstein-Barr virus ZEBRA protein separates its functions of transcriptional activation and disruption of latency.

作者信息

Francis A L, Gradoville L, Miller G

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06510, USA.

出版信息

J Virol. 1997 Apr;71(4):3054-61. doi: 10.1128/JVI.71.4.3054-3061.1997.

Abstract

The ZEBRA protein from Epstein-Barr virus (EBV) activates a switch from the latent to the lytic expression program of the virus. ZEBRA, a member of the bZIP family of DNA-binding proteins, is a transcriptional activator capable of inducing expression from viral lytic cycle promoters. It had previously been thought that ZEBRA's capacity to disrupt EBV latency resided primarily in its ability to activate transcription of genes that encode products required for lytic replication. We generated a point mutant of ZEBRA, Z(S186A), that was not impaired in its ability to activate transcription; however, this mutation abolished its ability to initiate the viral lytic cascade. The mutant, containing a serine-to-alanine substitution in the DNA-binding domain of the protein, bound to several known ZEBRA-binding sites and activated transcription from reporters bearing known ZEBRA-responsive promoters but did not disrupt latency in EBV-infected cell lines. Therefore, initiation of the EBV lytic cycle by the ZEBRA protein requires a function in addition to transcriptional activation; a change of serine 186 to alanine in the DNA-binding domain of ZEBRA abolished this additional function and uncovered a new role for the ZEBRA protein in disruption of EBV latency. The additional function that is required for initiation of the lytic viral life cycle is likely to require phosphorylation of serine 186 of the ZEBRA protein, which may influence either DNA recognition or transcriptional activation of lytic viral promoters in a chromatinized viral episome.

摘要

来自爱泼斯坦 - 巴尔病毒(EBV)的ZEBRA蛋白激活了病毒从潜伏性表达程序到裂解性表达程序的转换。ZEBRA是DNA结合蛋白bZIP家族的成员,是一种转录激活因子,能够诱导病毒裂解周期启动子的表达。以前人们认为ZEBRA破坏EBV潜伏性的能力主要在于其激活编码裂解复制所需产物的基因转录的能力。我们构建了一个ZEBRA的点突变体Z(S186A),其激活转录的能力未受损;然而,这种突变消除了其启动病毒裂解级联反应的能力。该突变体在蛋白质的DNA结合结构域中含有丝氨酸到丙氨酸的替换,它能与几个已知的ZEBRA结合位点结合,并从带有已知ZEBRA反应性启动子的报告基因激活转录,但不会破坏EBV感染细胞系中的潜伏性。因此,ZEBRA蛋白启动EBV裂解周期除了转录激活外还需要一种功能;ZEBRA的DNA结合结构域中丝氨酸186突变为丙氨酸消除了这种额外功能,并揭示了ZEBRA蛋白在破坏EBV潜伏性方面的新作用。裂解性病毒生命周期启动所需的额外功能可能需要ZEBRA蛋白丝氨酸186的磷酸化,这可能会影响染色质化病毒附加体中裂解性病毒启动子的DNA识别或转录激活。

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