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不依赖蛋白激酶C激活爱泼斯坦-巴尔病毒裂解周期

Protein kinase C-independent activation of the Epstein-Barr virus lytic cycle.

作者信息

Gradoville Lyndle, Kwa David, El-Guindy Ayman, Miller George

机构信息

Department of Pediatrics, Yale University School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

J Virol. 2002 Jun;76(11):5612-26. doi: 10.1128/jvi.76.11.5612-5626.2002.

Abstract

The protein kinase C (PKC) pathway has been considered to be essential for activation of latent Epstein-Barr virus (EBV) into the lytic cycle. The phorbol ester tetradecanoyl phorbol acetate (TPA), a PKC agonist, is one of the best understood activators of EBV lytic replication. Zp, the promoter of the EBV immediate-early gene BZLF1, whose product, ZEBRA, drives the lytic cycle, contains several phorbol ester response elements. We investigated the role of the PKC pathway in lytic cycle activation in prototype cell lines that differed dramatically in their response to inducing agents. We determined whether PKC was involved in lytic cycle induction by histone deacetylase (HDAC) inhibitors. Consistent with prevailing views, B95-8 cells were activated into the lytic cycle by the phorbol ester TPA, via a PKC-dependent mechanism. B95-8 was not inducible by HDAC inhibitors such as n-butyrate and trichostatin A (TSA). Bisindolylmaleimide I, a selective PKC inhibitor, blocked lytic cycle activation in B95-8 cells in response to TPA. In marked contrast, in HH514-16 cells, the immediate-early promoters Zp and Rp were simultaneously activated by the HDAC inhibitors; TPA by itself failed to activate lytic gene expression. Inhibition of PKC activity by bisindolylmaleimide I did not block lytic cycle activation in HH514-16 cells by n-butyrate or TSA. In an extensive exploration of the mechanism underlying these different responses we found that the variable role of the PKC pathway in the two cell lines could not be accounted for by significant polymorphisms in the promoters of the immediate-early genes, by differences in the start sites of immediate-early gene transcription, or by differences in the nucleosomal organization of EBV DNA in the region of Zp or Rp. While B95-8 cells contained more total PKC activity than did HH514-16 cells in an in vitro assay, another EBV-transformed marmoset lymphoblastoid cell line, FF41, in which the lytic cycle was not inducible by TPA, contained comparably high levels of PKC activity. Moreover, two marmoset lymphoblastoid cells lines in which the lytic cycle could not be triggered by TPA maintained the same profile of EBV latency proteins as B95-8 cells. Thus, the profile of EBV latency proteins did not account for susceptibility to induction by PKC agonists. PKC activation is neither obligatory nor sufficient for the switch between latency and lytic cycle gene expression of EBV in many cell backgrounds. Lytic cycle induction by HDAC inhibitors proceeds by a PKC-independent mechanism.

摘要

蛋白激酶C(PKC)信号通路被认为是潜伏的爱泼斯坦-巴尔病毒(EBV)激活进入裂解周期所必需的。佛波酯十四烷酰佛波醇乙酸酯(TPA)是一种PKC激动剂,是EBV裂解复制中研究最深入的激活剂之一。EBV立即早期基因BZLF1的启动子Zp,其产物ZEBRA驱动裂解周期,包含多个佛波酯反应元件。我们研究了PKC信号通路在原型细胞系裂解周期激活中的作用,这些细胞系对诱导剂的反应差异很大。我们确定PKC是否参与组蛋白脱乙酰酶(HDAC)抑制剂诱导的裂解周期。与普遍观点一致,佛波酯TPA通过PKC依赖性机制将B95-8细胞激活进入裂解周期。B95-8细胞不能被HDAC抑制剂如丁酸盐和曲古抑菌素A(TSA)诱导。双吲哚马来酰亚胺I是一种选择性PKC抑制剂,可阻断B95-8细胞对TPA的裂解周期激活。与之形成鲜明对比的是,在HH514-16细胞中,HDAC抑制剂同时激活了立即早期启动子Zp和Rp;TPA本身未能激活裂解基因表达。双吲哚马来酰亚胺I抑制PKC活性并不能阻断HH514-16细胞中丁酸盐或TSA诱导的裂解周期激活。在对这些不同反应背后机制的广泛探索中,我们发现PKC信号通路在这两种细胞系中的不同作用,不能用立即早期基因启动子中的显著多态性、立即早期基因转录起始位点的差异或Zp或Rp区域中EBV DNA的核小体组织差异来解释。虽然在体外实验中B95-8细胞的总PKC活性比HH514-16细胞高,但另一种EBV转化的狨猴淋巴母细胞系FF41,其裂解周期不能被TPA诱导,却含有相当高水平的PKC活性。此外,两种不能被TPA触发裂解周期的狨猴淋巴母细胞系,其EBV潜伏蛋白谱与B95-8细胞相同。因此,EBV潜伏蛋白谱并不能解释对PKC激动剂诱导的易感性。在许多细胞背景中,PKC激活对于EBV潜伏期和裂解周期基因表达之间的转换既不是必需的也不是充分的。HDAC抑制剂诱导的裂解周期通过PKC非依赖性机制进行。

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