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爱泼斯坦-巴尔病毒核蛋白3C通过与序列特异性DNA结合蛋白Jκ相互作用来调节转录。

Epstein-Barr virus nuclear protein 3C modulates transcription through interaction with the sequence-specific DNA-binding protein J kappa.

作者信息

Robertson E S, Grossman S, Johannsen E, Miller C, Lin J, Tomkinson B, Kieff E

机构信息

Department of Microbiology, Harvard University, Boston, Massachusetts 02115, USA.

出版信息

J Virol. 1995 May;69(5):3108-16. doi: 10.1128/JVI.69.5.3108-3116.1995.

Abstract

The Epstein-Barr virus (EBV) nuclear protein 3C (EBNA 3C) is essential for EBV-mediated transformation of primary B lymphocytes, is turned on by EBNA 2, and regulates transcription of some of the viral and cellular genes which are regulated by EBNA 2. EBNA 2 is targeted to response elements by binding to the DNA sequence-specific, transcriptional repressor protein J kappa. We now show that EBNA 3C also binds to J kappa. EBNA 3C causes J kappa to not bind DNA or EBNA 2. J kappa DNA binding activity in EBV-transformed lymphoblastoid cells is consequently reduced. More than 10% of the EBNA 3C coimmunoprecipitated with J kappa from extracts of non-EBV-infected B lymphoblasts that had been stably converted to EBNA 3C expression. EBNA 3C in nuclear extracts from these cells (or in vitro-translated EBNA 3C) prevented J kappa from interacting with a high-affinity DNA binding site. Under conditions of transient overexpression in B lymphoblasts, EBNA 2 and EBNA 3C associated with J kappa and less EBNA 2 associated with J kappa when EBNA 3C was coexpressed in the same cell. EBNA 3C had no effect on the activity of a -512/+40 LMP1 promoter-CAT reporter construct that has two upstream J kappa sites, but it did inhibit EBNA 2 transactivation of this promoter. These data are compatible with a role for EBNA 3C as a "feedback" down modulator of EBNA 2-mediated transactivation. EBNA 3C could, in theory, also activate transcription by inhibiting the interaction of the J kappa repressor with its cognate DNA. The interaction of two viral transcriptional regulators with the same cell protein may reflect an unusually high level of complexity or stringency in target gene regulation.

摘要

爱泼斯坦-巴尔病毒(EBV)核蛋白3C(EBNA 3C)对于EBV介导的原代B淋巴细胞转化至关重要,它由EBNA 2激活,并调节一些受EBNA 2调控的病毒和细胞基因的转录。EBNA 2通过与DNA序列特异性转录抑制蛋白Jκ结合靶向反应元件。我们现在发现EBNA 3C也与Jκ结合。EBNA 3C导致Jκ不与DNA或EBNA 2结合。因此,EBV转化的淋巴母细胞中的Jκ DNA结合活性降低。从已稳定转化为EBNA 3C表达的非EBV感染B淋巴母细胞提取物中,超过10%的EBNA 3C与Jκ共免疫沉淀。这些细胞的核提取物中的EBNA 3C(或体外翻译的EBNA 3C)阻止Jκ与高亲和力DNA结合位点相互作用。在B淋巴母细胞中瞬时过表达的条件下,EBNA 2和EBNA 3C与Jκ相关联,当EBNA 3C在同一细胞中共表达时,与Jκ相关联的EBNA 2减少。EBNA 3C对具有两个上游Jκ位点的-512/+40 LMP1启动子-CAT报告构建体的活性没有影响,但它确实抑制了该启动子的EBNA 2反式激活。这些数据与EBNA 3C作为EBNA 2介导的反式激活的“反馈”下调调节因子的作用一致。从理论上讲,EBNA 3C也可以通过抑制Jκ阻遏物与其同源DNA的相互作用来激活转录。两种病毒转录调节因子与同一细胞蛋白的相互作用可能反映了靶基因调控中异常高的复杂性或严格性。

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