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Epstein-Barr Virus LMP2A Reduces Hyperactivation Induced by LMP1 to Restore Normal B Cell Phenotype in Transgenic Mice

机译:爱泼斯坦巴尔病毒LMP2A减少由LMP1诱导的过度激活以恢复转基因小鼠的正常B细胞​​表型

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摘要

Epstein-Barr virus (EBV) latently infects most of the human population and is strongly associated with lymphoproliferative disorders. EBV encodes several latency proteins affecting B cell proliferation and survival, including latent membrane protein 2A (LMP2A) and the EBV oncoprotein LMP1. LMP1 and LMP2A signaling mimics CD40 and BCR signaling, respectively, and has been proposed to alter B cell functions including the ability of latently-infected B cells to access and transit the germinal center. In addition, several studies suggested a role for LMP2A modulation of LMP1 signaling in cell lines by alteration of TRAFs, signaling molecules used by LMP1. In this study, we investigated whether LMP1 and LMP2A co-expression in a transgenic mouse model alters B cell maturation and the response to antigen, and whether LMP2A modulates LMP1 function. Naïve LMP1/2A mice had similar lymphocyte populations and antibody production by flow cytometry and ELISA compared to controls. In the response to antigen, LMP2A expression in LMP1/2A animals rescued the impairment in germinal center generation promoted by LMP1. LMP1/2A animals produced high-affinity, class-switched antibody and plasma cells at levels similar to controls. In vitro, LMP1 upregulated activation markers and promoted B cell hyperproliferation, and co-expression of LMP2A restored a wild-type phenotype. By RT-PCR and immunoblot, LMP1 B cells demonstrated TRAF2 levels four-fold higher than non-transgenic controls, and co-expression of LMP2A restored TRAF2 levels to wild-type levels. No difference in TRAF3 levels was detected. While modulation of other TRAF family members remains to be assessed, normalization of the LMP1-induced B cell phenotype through LMP2A modulation of TRAF2 may be a pathway by which LMP2A controls B cell function. These findings identify an advance in the understanding of how Epstein-Barr virus can access the germinal center in vivo, a site critical for both the genesis of immunological memory and of virus-associated tumors.
机译:爱泼斯坦-巴尔病毒(EBV)潜在地感染了大多数人,并且与淋巴增生性疾病密切相关。 EBV编码几种影响B细胞增殖和存活的潜伏期蛋白,包括潜伏膜蛋白2A(LMP2A)和EBV癌蛋白LMP1。 LMP1和LMP2A信号分别模拟CD40和BCR信号,并且已被提议改变B细胞功能,包括潜伏感染的B细胞进入和转移生发中心的能力。另外,一些研究表明,通过改变TRAPs(LMP1使用的信号分子),可以在细胞系中对LMP1A信号的LMP2A调节起作用。在这项研究中,我们调查了LMP1和LMP2A在转基因小鼠模型中的共表达是否会改变B细胞的成熟和对抗原的反应,以及LMP2A是否调节LMP1的功能。与对照组相比,幼稚的LMP1 / 2A小鼠通过流式细胞术和ELISA检测具有相似的淋巴细胞群体和抗体产生。在对抗原的反应中,LMP1 / 2A动物中的LMP2A表达挽救了LMP1促进生发中心生成的损伤。 LMP1 / 2A动物产生的高亲和力,类别转换的抗体和浆细胞的水平与对照相似。在体外,LMP1上调激活标记并促进B细胞过度增殖,并且LMP2A的共表达恢复了野生型的表型。通过RT-PCR和免疫印迹,LMP1 B细胞显示出TRAF2水平比非转基因对照高四倍,并且LMP2A的共表达将TRAF2水平恢复为野生型水平。没有检测到TRAF3水平的差异。尽管尚需评估其他TRAF家族成员的调节,但通过LAF2A的LMP2A调节LMP1诱导的B细胞表型的正常化可能是LMP2A控制B细胞功能的途径。这些发现确定了对爱泼斯坦-巴尔病毒如何在体内进入生发中心的认识的进步,这是免疫记忆和与病毒相关的肿瘤发生的关键部位。

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