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缺氧诱导因子-1α通过直接结合即刻早期BZLF1基因启动子诱导裂解感染,在爱泼斯坦-巴尔病毒的自然生命周期和肿瘤发生中发挥作用。

Hypoxia-inducible factor-1α plays roles in Epstein-Barr virus's natural life cycle and tumorigenesis by inducing lytic infection through direct binding to the immediate-early BZLF1 gene promoter.

作者信息

Kraus Richard J, Yu Xianming, Cordes Blue-Leaf A, Sathiamoorthi Saraniya, Iempridee Tawin, Nawandar Dhananjay M, Ma Shidong, Romero-Masters James C, McChesney Kyle G, Lin Zhen, Makielski Kathleen R, Lee Denis L, Lambert Paul F, Johannsen Eric C, Kenney Shannon C, Mertz Janet E

机构信息

McArdle Laboratory for Cancer Research, Department of Oncology, University of Wisconsin-Madison School of Medicine and Public Health, Madison, Wisconsin, United States of America.

National Nanotechnology Center, National Science and Technology Development Agency, Thailand Science Park, Pathum Thani, Thailand.

出版信息

PLoS Pathog. 2017 Jun 15;13(6):e1006404. doi: 10.1371/journal.ppat.1006404. eCollection 2017 Jun.

Abstract

When confronted with poor oxygenation, cells adapt by activating survival signaling pathways, including the oxygen-sensitive transcriptional regulators called hypoxia-inducible factor alphas (HIF-αs). We report here that HIF-1α also regulates the life cycle of Epstein-Barr virus (EBV). Incubation of EBV-positive gastric carcinoma AGS-Akata and SNU-719 and Burkitt lymphoma Sal and KemIII cell lines with a prolyl hydroxylase inhibitor, L-mimosine or deferoxamine, or the NEDDylation inhibitor MLN4924 promoted rapid and sustained accumulation of both HIF-1α and lytic EBV antigens. ShRNA knockdown of HIF-1α significantly reduced deferoxamine-mediated lytic reactivation. HIF-1α directly bound the promoter of the EBV primary latent-lytic switch BZLF1 gene, Zp, activating transcription via a consensus hypoxia-response element (HRE) located at nt -83 through -76 relative to the transcription initiation site. HIF-1α did not activate transcription from the other EBV immediate-early gene, BRLF1. Importantly, expression of HIF-1α induced EBV lytic-gene expression in cells harboring wild-type EBV, but not in cells infected with variants containing base-pair substitution mutations within this HRE. Human oral keratinocyte (NOK) and gingival epithelial (hGET) cells induced to differentiate by incubation with either methyl cellulose or growth in organotypic culture accumulated both HIF-1α and Blimp-1α, another cellular factor implicated in lytic reactivation. HIF-1α activity also accumulated along with Blimp-1α during B-cell differentiation into plasma cells. Furthermore, most BZLF1-expressing cells observed in lymphomas induced by EBV in NSG mice with a humanized immune system were located distal to blood vessels in hypoxic regions of the tumors. Thus, we conclude that HIF-1α plays central roles in both EBV's natural life cycle and EBV-associated tumorigenesis. We propose that drugs that induce HIF-1α protein accumulation are good candidates for development of a lytic-induction therapy for treating some EBV-associated malignancies.

摘要

当面临氧合不足时,细胞通过激活生存信号通路进行适应,这些通路包括称为缺氧诱导因子α(HIF-αs)的氧敏感转录调节因子。我们在此报告,HIF-1α还调节爱泼斯坦-巴尔病毒(EBV)的生命周期。用脯氨酰羟化酶抑制剂L-含羞草碱或去铁胺,或NEDDylation抑制剂MLN4924处理EBV阳性胃癌AGS-Akata和SNU-719以及伯基特淋巴瘤Sal和KemIII细胞系,可促进HIF-1α和EBV裂解抗原的快速持续积累。通过短发夹RNA敲低HIF-1α可显著降低去铁胺介导的裂解再激活。HIF-1α直接结合EBV原发性潜伏-裂解开关BZLF1基因的启动子Zp,通过位于相对于转录起始位点-83至-76核苷酸处的共有缺氧反应元件(HRE)激活转录。HIF-1α不激活另一个EBV立即早期基因BRLF1的转录。重要的是,HIF-1α的表达在携带野生型EBV但不携带在此HRE内含有碱基对替代突变的变体感染细胞的细胞中诱导EBV裂解基因表达。通过与甲基纤维素孵育或在组织型培养中生长诱导分化的人口腔角质形成细胞(NOK)和牙龈上皮细胞(hGET)积累了HIF-1α和Blimp-1α,Blimp-1α是另一种与裂解再激活有关的细胞因子。在B细胞分化为浆细胞的过程中,HIF-1α活性也与Blimp-1α一起积累。此外,在具有人源化免疫系统的NSG小鼠中由EBV诱导的淋巴瘤中观察到的大多数表达BZLF1的细胞位于肿瘤缺氧区域血管远端。因此,我们得出结论,HIF-1α在EBV的自然生命周期和EBV相关肿瘤发生中都起着核心作用。我们提出,诱导HIF-1α蛋白积累的药物是开发用于治疗某些EBV相关恶性肿瘤的裂解诱导疗法的良好候选药物。

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