首页> 美国卫生研究院文献>Journal of Virology >Structural Functional and Genetic Comparisons of Epstein-Barr Virus Nuclear Antigen 3A 3B and 3C Homologues Encoded by the Rhesus Lymphocryptovirus
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Structural Functional and Genetic Comparisons of Epstein-Barr Virus Nuclear Antigen 3A 3B and 3C Homologues Encoded by the Rhesus Lymphocryptovirus

机译:恒河猴淋巴病毒编码的爱泼斯坦-巴尔病毒核抗原3A3B和3C同源物的结构功能和遗传比较

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摘要

EBNA-3A, -3B, and -3C are three latent infection nuclear proteins important for Epstein-Barr virus (EBV)-induced B-cell immortalization and the immune response to EBV infection. All three are hypothesized to function as transcriptional transactivators, but little is known about their precise mechanism of action or their role in EBV pathogenesis. We have cloned and studied the three EBNA-3 homologues from a closely related lymphocryptovirus (LCV) which naturally infects rhesus monkeys. The rhesus LCV EBNA-3A, -3B, and -3C homologues have 37, 40, and 36% amino acid identity with the EBV genes, respectively. Function, as measured by in vitro assays, also appears to be conserved with the EBV genes, since the rhesus LCV EBNA-3s can interact with the transcription factor RBP-Jκ and the rhesus LCV EBNA-3C encodes a Q/P-rich domain with transcriptional activation properties. In order to better understand the relationship between these EBV and rhesus LCV latent infection genes, we asked if the rhesus LCV EBNA-3 locus could be recombined into the EBV genome and if it could substitute for the EBV EBNA-3s when assayed for human B-cell immortalization. Recombination between the EBV genome and rhesus LCV DNA was reasonably efficient. However, these studies suggest that the rhesus LCV EBNA-3 locus was not completely interchangeable with the EBV EBNA-3 locus for B-cell immortalization and that at least one determinant of the species restriction for LCV-induced B-cell immortalization maps to the EBNA-3 locus. The overall conservation of EBNA-3 structure and function between EBV and rhesus LCV indicates that rhesus LCV infection of rhesus monkeys can provide an important animal model for studying the role of the EBNA-3 genes in LCV pathogenesis.
机译:EBNA-3A,-3B和-3C是三种潜在的感染核蛋白,对于爱泼斯坦-巴尔病毒(EBV)诱导的B细胞永生化以及对EBV感染的免疫反应很重要。假设所有这三个都起转录反式激活因子的作用,但对其确切的作用机理或它们在EBV发病机理中的作用知之甚少。我们已经从自然感染恒河猴的紧密相关的淋巴病毒(LCV)中克隆并研究了三个EBNA-3同源物。恒河猴LCV EBNA-3A,-3B和-3C同源物分别与EBV基因具有37%,40%和36%的氨基酸同一性。通过体外试验测量的功能似乎也与EBV基因保持一致,因为恒河猴LCV EBNA-3s可以与转录因子RBP-Jκ相互作用,而恒河猴LCV EBNA-3C编码富含Q / P的结构域具有转录激活特性。为了更好地了解这些EBV和恒河猴LCV潜伏感染基因之间的关系,我们询问了恒河猴LCV EBNA-3基因座是否可以重组到EBV基因组中,并且在检测人B时是否可以代替EBV EBNA-3s细胞永生化。 EBV基因组和恒河猴LCV DNA之间的重组是相当有效的。但是,这些研究表明,恒河猴LCV EBNA-3基因座与BV永生化的EBV EBNA-3基因座不能完全互换,并且至少一个决定LCV诱导的B细胞永生化的物种限制因素决定了该恒河猴的LCV EBNA-3基因座。 EBNA-3基因座。 EBNA和恒河猴LCV之间的EBNA-3结构和功能的总体保守性表明,恒河猴的恒河猴LCV感染可以为研究EBNA-3基因在LCV发病机理中的作用提供重要的动物模型。

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