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EBV LMP2A的一个自动调节环路涉及Notch的激活。

An auto-regulatory loop for EBV LMP2A involves activation of Notch.

作者信息

Anderson Leah J, Longnecker Richard

机构信息

Department of Microbiology and Immunology, Northwestern University, Chicago, Illinois 60611, USA.

出版信息

Virology. 2008 Feb 20;371(2):257-66. doi: 10.1016/j.virol.2007.10.009. Epub 2007 Nov 5.

Abstract

LMP2A is consistently detected in Hodgkin's lymphoma, nasopharyngeal carcinoma and has also been detected in Burkitt's lymphoma. Interestingly, LMP2A is detected in the absence of the transcriptional activator EBNA2, suggesting that an alternative mechanism is responsible for LMP2A expression. The intracellular domain of Notch (Notch-IC) and EBNA2 are functional homologs and recent microarray analysis indicates that LMP2A may constitutively activate the Notch pathway in vivo. Coupled with evidence that Notch-IC can bind to and activate the LMP2A promoter, we hypothesized that expression of LMP2A results in the constitutive activation of the Notch pathway to auto-regulate its promoter. Our data indicate that LMP2A constitutively activates the Notch pathway in B cells and epithelial cells. Expression of LMP2A alone is sufficient to activate its own expression and the amino-terminal signaling domain is required as LMP2B is unable to activate the LMP2A promoter. In addition, point mutations in tyrosines 31, 101 and 112 each results in a significant decrease in LMP2A promoter activation. Deletion of the RBP-Jkappa consensus sequences results in a significant decrease in promoter activity. The observation that LMP2A activates its own promoter suggests that LMP2A exploits the Notch pathway in order to control its own expression and may explain EBNA2-independent expression of LMP2A in EBV-associated malignancies.

摘要

LMP2A在霍奇金淋巴瘤、鼻咽癌中持续被检测到,在伯基特淋巴瘤中也有检测到。有趣的是,在缺乏转录激活因子EBNA2的情况下也能检测到LMP2A,这表明存在另一种机制负责LMP2A的表达。Notch的细胞内结构域(Notch-IC)和EBNA2是功能同源物,最近的微阵列分析表明LMP2A可能在体内组成性激活Notch信号通路。结合Notch-IC能结合并激活LMP2A启动子的证据,我们推测LMP2A的表达导致Notch信号通路的组成性激活,从而对其启动子进行自我调节。我们的数据表明,LMP2A在B细胞和上皮细胞中组成性激活Notch信号通路。单独LMP2A的表达就足以激活其自身的表达,并且需要氨基末端信号结构域,因为LMP2B无法激活LMP2A启动子。此外,酪氨酸31、101和112的点突变均导致LMP2A启动子激活显著降低。RBP-Jκ共有序列的缺失导致启动子活性显著降低。LMP2A激活其自身启动子这一观察结果表明,LMP2A利用Notch信号通路来控制自身表达,这可能解释了EBV相关恶性肿瘤中LMP2A不依赖EBNA2的表达。

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