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鉴定B细胞受体介导的爱泼斯坦-巴尔病毒即刻早期基因启动子激活所需的蛋白酪氨酸激酶。

Identification of protein tyrosine kinases required for B-cell- receptor-mediated activation of an Epstein-Barr Virus immediate-early gene promoter.

作者信息

Lavens Sandra, Faust Emmanuel A, Lu Fang, Jacob Michele, Leta Messele, Lieberman Paul M, Puré Ellen

机构信息

Wistar Institute, 3601 Spruce St., Philadelphia, PA 19104, USA.

出版信息

J Virol. 2004 Aug;78(16):8543-51. doi: 10.1128/JVI.78.16.8543-8551.2004.

Abstract

Epstein-Barr Virus (EBV) is a potentially oncogenic herpesvirus that infects >90% of the world's population. EBV exists predominantly as a latent infection in B lymphocytes, with periodic lytic-cycle reactivation essential for cellular and host transmission. Viral reactivation can be stimulated by ligand-induced activation of B-cell-receptor (BCR)-coupled signaling pathways. The critical first step in the transition from latency to the lytic cycle is the expression of the viral immediate-early gene BZLF1 through the transcription activation of its promoter, Zp. However, the BCR-coupled signal transduction cascade(s) leading to the induction of Zp and the expression of the BZLF1 gene product, Zta, is currently unclear. A major obstacle to delineating the relevant signal transduction events has been the lack of a model of EBV infection that is amenable to genetic manipulation. The use of the avian B-cell line DT40 has proven to be a powerful tool for delineating BCR-mediated signal transduction pathways that appear to be highly conserved between avian and mammalian systems. We demonstrate that the DT40 cell line is a robust and genetically tractable system for the study of BCR-mediated signaling pathways leading to transcriptional activation of BZLF1. Using this system, we demonstrate that activation of Zp requires the BCR-coupled protein tyrosine kinases Syk and Btk and that it is positively regulated by Lyn. Thus, the use of DT40 cells has allowed us to delineate the early signaling components required for BCR-dependent reactivation of latent EBV, and this system is likely to prove useful for further dissection of the downstream signaling cascades involved.

摘要

爱泼斯坦-巴尔病毒(EBV)是一种具有潜在致癌性的疱疹病毒,全球超过90%的人口都曾感染过。EBV主要以潜伏感染的形式存在于B淋巴细胞中,其周期性的裂解周期再激活对于细胞和宿主传播至关重要。病毒再激活可由配体诱导的B细胞受体(BCR)偶联信号通路激活所刺激。从潜伏期过渡到裂解周期的关键第一步是通过病毒立即早期基因BZLF1启动子Zp的转录激活来表达该基因。然而,目前尚不清楚导致Zp诱导和BZLF1基因产物Zta表达的BCR偶联信号转导级联反应。描绘相关信号转导事件的一个主要障碍是缺乏适合基因操作的EBV感染模型。事实证明,使用禽类B细胞系DT40是描绘BCR介导的信号转导途径的有力工具,这些途径在禽类和哺乳动物系统之间似乎高度保守。我们证明DT40细胞系是研究导致BZLF1转录激活的BCR介导信号通路的强大且遗传上易于处理的系统。利用该系统,我们证明Zp的激活需要BCR偶联的蛋白酪氨酸激酶Syk和Btk,并且它受到Lyn的正向调节。因此,DT40细胞的使用使我们能够描绘潜伏EBV的BCR依赖性再激活所需的早期信号成分,并且该系统可能被证明对进一步剖析所涉及的下游信号级联反应有用。

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