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Epstein-Barr virus nuclear protein 2 transactivation of the latent membrane protein 1 promoter is mediated by J kappa and PU.1.

机译:潜在膜蛋白1启动子的爱泼斯坦-巴尔病毒核蛋白2反式激活是由Jκ和PU.1介导的。

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摘要

Expression of the Epstein-Barr virus (EBV) latent membrane protein 1 (LMP-1) oncogene is regulated by the EBV nuclear protein 2 (EBNA-2) transactivator. EBNA-2 is known to interact with the cellular DNA-binding protein J kappa and is recruited to promoters containing the GTGGGAA J kappa recognition sequence. The minimal EBNA-2-responsive LMP-1 promoter includes one J kappa-binding site, and we now show that mutation of that site, such that J kappa cannot bind, reduces EBNA-2 responsiveness by 60%. To identify other factors which interact with the LMP-1 EBNA-2 response element (E2RE), a -236/-145 minimal E2RE was used as a probe in an electrophoretic mobility shift assay. The previously characterized factors J kappa, PU.1, and AML1 bind to the LMP-1 E2RE, along with six other unidentified factors (LBF2 to LBF7). Binding sites were mapped for each factor. LBF4 is B- and T-cell specific and recognizes the PU.1 GGAA core sequence as shown by methylation interference. LBF4 has a molecular mass of 105 kDa and is probably unrelated to PU.1. LBF2 was found only in epithelial cell lines, whereas LBF3, LBF5, LBF6, and LBF7 were not cell type specific. Mutations of the AML1- or LBF4-binding sites had no effect on EBNA-2 transactivation, whereas mutation of the PU.1-binding site completely eliminated EBNA-2 responses. A gst-EBNA-2 fusion protein specifically depleted PU.1 from nuclear extracts and bound in vitro translated PU.1, providing biochemical evidence for a direct EBNA-2-PU.1 interaction. Thus, EBNA-2 transactivation of the LMP-1 promoter is dependent on interaction with at least two distinct sequence-specific DNA-binding proteins, J kappa and PU.1. LBF3, LBF5, LBF6, or LBF7 may also be involved, since their binding sites also contribute to EBNA-2 responsiveness.
机译:EBV核蛋白2(EBNA-2)反式激活因子调节EB潜伏膜蛋白1(LMP-1)癌基因的表达。已知EBNA-2与细胞DNA结合蛋白Jκ相互作用,并被募集到含有GTGGGAAJκ识别序列的启动子上。最小的EBNA-2响应LMP-1启动子包括一个J kappa结合位点,我们现在表明该位点的突变(使J kappa无法结合)使EBNA-2响应性降低了60%。为了鉴定与LMP-1 EBNA-2响应元件(E2RE)相互作用的其他因素,在电泳迁移率变动分析中将-236 / -145最小E2RE用作探针。先前表征的因子J kappa,PU.1和AML1与其他六个未知因子(LBF2至LBF7)结合到LMP-1 E2RE。为每个因子定位结合位点。 LBF4是B细胞和T细胞特异性的,可识别PU.1 GGAA核心序列,如甲基化干扰所示。 LBF4的分子量为105 kDa,可能与PU.1无关。 LBF2仅在上皮细胞系中发现,而LBF3,LBF5,LBF6和LBF7不是细胞类型特异性的。 AML1或LBF4结合位点的突变对EBNA-2反式激活没有影响,而PU.1结合位点的突变则完全消除了EBNA-2响应。一种gst-EBNA-2融合蛋白从核提取物中特异性消耗了PU.1,并与体外翻译的PU.1结合,为EBNA-2-PU.1直接相互作用提供了生化证据。因此,LMP-1启动子的EBNA-2反式激活取决于与至少两个不同的序列特异性DNA结合蛋白Jκ和PU.1的相互作用。 LBF3,LBF5,LBF6或LBF7也可能涉及,因为它们的结合位点也有助于EBNA-2响应。

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