首页> 美国卫生研究院文献>Journal of Virology >The Epstein-Barr Virus (EBV)-Encoded Protein Kinase EBV-PK but Not the Thymidine Kinase (EBV-TK) Is Required for Ganciclovir and Acyclovir Inhibition of Lytic Viral Production
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The Epstein-Barr Virus (EBV)-Encoded Protein Kinase EBV-PK but Not the Thymidine Kinase (EBV-TK) Is Required for Ganciclovir and Acyclovir Inhibition of Lytic Viral Production

机译:更昔洛韦和阿昔洛韦抑制裂解病毒生产需要爱泼斯坦-巴尔病毒(EBV)编码的蛋白激酶EBV-PK而不是胸苷激酶(EBV-TK)

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摘要

Ganciclovir (GCV) and acyclovir (ACV) are guanine nucleoside analogues that inhibit lytic herpesvirus replication. GCV and ACV must be monophosphorylated by virally encoded enzymes to be converted into nucleotides and incorporated into viral DNA. However, whether GCV and/or ACV phosphorylation in Epstein-Barr virus (EBV)-infected cells is mediated primarily by the EBV-encoded protein kinase (EBV-PK), the EBV-encoded thymidine kinase (EBV-TK), or both is controversial. To examine this question, we constructed EBV mutants containing stop codons in either the EBV-PK or EBV-TK open reading frame and selected for stable 293T clones latently infected with wild-type EBV or each of the mutant viruses. Cells were induced to the lytic form of viral replication with a BZLF1 expression vector in the presence and absence of various doses of GCV and ACV, and infectious viral titers were determined by a green Raji cell assay. As expected, virus production in wild-type EBV-infected 293T cells was inhibited by both GCV (50% inhibitory concentration [IC50] = 1.5 μM) and ACV (IC50 = 4.1 μM). However, the EBV-PK mutant (which replicates as well as the wild-type (WT) virus in 293T cells) was resistant to both GCV (IC50 = 19.6 μM) and ACV (IC50 = 36.4 μM). Expression of the EBV-PK protein in trans restored GCV and ACV sensitivity in cells infected with the PK mutant virus. In contrast, in 293T cells infected with the TK mutant virus, viral replication remained sensitive to both GCV (IC50 = 1.2 μM) and ACV (IC50 = 2.8 μM), although susceptibility to the thymine nucleoside analogue, bromodeoxyuridine, was reduced. Thus, EBV-PK but not EBV-TK mediates ACV and GCV susceptibilities.
机译:更昔洛韦(GCV)和阿昔洛韦(ACV)是鸟嘌呤核苷类似物,可抑制溶解性疱疹病毒复制。 GCV和ACV必须被病毒编码的酶单磷酸化才能转化为核苷酸并掺入病毒DNA中。但是,EB病毒编码的蛋白激酶(EBV-PK),EBV编码的胸苷激酶(EBV-TK)或两者均介导了EB病毒感染的细胞中GCV和/或ACV的磷酸化有争议。为了检验这个问题,我们构建了在EBV-PK或EBV-TK开放阅读框中包含终止密码子的EBV突变体,并选择了潜在感染野生型EBV或每种突变体病毒的稳定293T克隆。在存在和不存在各种剂量的GCV和ACV的情况下,用BZLF1表达载体将细胞诱导为裂解形式的病毒复制,并通过绿色Raji细胞测定法确定感染性病毒滴度。如预期的那样,GCV(50%抑制浓度[IC50] = 1.5μM)和ACV(IC50 = 4.1μM)均抑制了野生型EBV感染的293T细胞中的病毒产生。但是,EBV-PK突变体(在293T细胞中复制并与野生型(WT)病毒一样)对GCV(IC50 = 19.6μM)和ACV(IC50 = 36.4μM)均具有抗性。在被PK突变病毒感染的细胞中,EBV-PK蛋白在反式恢复的GCV和ACV敏感性中的表达。相反,在被TK突变病毒感染的293T细胞中,病毒复制对GCV(IC50 = 1.2μM)和ACV(IC50 = 2.8μM)仍然敏感,尽管对胸腺嘧啶核苷类似物溴脱氧尿苷的敏感性降低了。因此,EBV-PK而不是EBV-TK介导ACV和GCV敏感性。

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