Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul 135-710, Korea.
Mol Cells. 2011 Dec;32(6):555-60. doi: 10.1007/s10059-011-0177-5. Epub 2011 Oct 19.
Downregulation of the CD99 antigen on the surface of Hodgkin's lymphoma (HL) cells via EBV LMP1-mediated NF-κB suppression of Sp1 transcriptional activity is known to be associated with the appearance of pathogenic Reed-Sternberg cells. Here, we show that in addition, EBV LMP1 heterologous NF-κB activators such as CD30 and CD40 repress the CD99 promoter, which contains multiple Sp1-binding sites but no NF-κB binding sites. In addition, NF-κB-inducing kinase (NIK) repressed the CD99 promoter while NIK kinase mutants and JNK inhibitory protein failed to do so. Of the NF-κB subunits, NF-κB2 (p52) alone or in combination with other Rel subunits consistently inhibited the CD99, while NF-κB1 (p50) showed a marginal repressive effect. Furthermore, while transfection of LMP1 repressed the CD99 promoter in wild-type or NF-κB1 deficient MEFs, the same repression was not observed in NF-κB2 (p52)-deficient MEFs, indicating that NF-κB2 (p52) is required for LMP1-mediated repression of the CD99 promoter. Consistently, basal activity of the CD99 promoter was significantly higher in IKKα(-/-) and IKKβ(-/-) MEFs, but not in IKKΓ(-/-) MEFs compared to the wild-type control MEFs. Sp1-binding sites were directly used in the repression, because a synthetic Sp1 reporter with 10 Sp1-binding sites from the CD99 promoter was repressed by LMP1 or p52 transfection. These data indicate that LMP1-mediated NF-κB2 exhibits the major inhibitory role in the transcription at the CD99 promoter.
已知 EBV LMP1 通过抑制 Sp1 转录活性来下调霍奇金淋巴瘤(HL)细胞表面的 CD99 抗原,这与致病性 Reed-Sternberg 细胞的出现有关。在这里,我们还表明,除了 EBV LMP1 异源 NF-κB 激活剂如 CD30 和 CD40 抑制 CD99 启动子外,该启动子包含多个 Sp1 结合位点,但没有 NF-κB 结合位点。此外,NF-κB 诱导激酶(NIK)抑制了 CD99 启动子,而 NIK 激酶突变体和 JNK 抑制蛋白则不能。在 NF-κB 亚基中,NF-κB2(p52)单独或与其他 Rel 亚基一起一致抑制 CD99,而 NF-κB1(p50)显示出轻微的抑制作用。此外,尽管 LMP1 转染在野生型或 NF-κB1 缺陷型 MEFs 中抑制了 CD99 启动子,但在 NF-κB2(p52)缺陷型 MEFs 中未观察到相同的抑制作用,表明 NF-κB2(p52)是 LMP1 介导的 CD99 启动子抑制所必需的。一致地,在 IKKα(-/-)和 IKKβ(-/-) MEFs 中,CD99 启动子的基础活性明显高于野生型对照 MEFs,但在 IKKγ(-/-) MEFs 中则没有,与野生型对照 MEFs 相比,CD99 启动子的基础活性明显更高。Sp1 结合位点直接用于抑制,因为来自 CD99 启动子的 10 个 Sp1 结合位点的合成 Sp1 报告基因被 LMP1 或 p52 转染抑制。这些数据表明,LMP1 介导的 NF-κB2 在 CD99 启动子的转录中表现出主要的抑制作用。