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EBV BART MicroRNAs Target Pro-apoptotic and Anti-Wnt Signaling Genes to Promote Cell Survival and Proliferation.

机译:EBV BART MicroRNAs靶向促凋亡和抗Wnt信号基因,以促进细胞存活和增殖。

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摘要

Epstein-Barr virus (EBV) is a ubiquitous human gamma-herpesvirus which chronically infects >95% of the global population, and can give rise to a number of malignancies in B cells and epithelial cells. In EBV latently infected epithelial cells, such as nasopharyngeal carcinoma (NPC) and gastric carcinoma (GaCa) cells, viral protein expression is low. In contrast, a cluster of viral microRNAs (miRNAs) called miR-BARTs is highly expressed. MiRNAs are small non-coding RNAs which regulate gene expression by binding to complementary sequences in mRNAs. It is likely that miR-BARTs play a crucial role in EBV-infected epithelial cells, however a comprehensive understanding of miR-BARTs is currently lacking. Here, I present two studies utilizing the phenotypic and the target approaches, respectively, to demonstrate that miR-BARTs can inhibit apoptosis and activate the Wnt signaling pathway. To discover miR-BARTs that can inhibit apoptosis, I individually expressed miR-BARTs in the EBV- GaCa cell line AGS, and identified five miR-BARTs that conferred this phenotype. To identify pro-apoptotic genes targeted by the five anti-apoptotic miRNAs, I validated one previously published target and identified nine novel targets by performing photoactivatable ribonucleoside-enhanced crosslinking and immunoprecipitation (PAR-CLIP) in the EBV+ NPC cell line C666. Next, I thoroughly demonstrated that the 10 candidate target genes were substantially suppressed by expression of the relevant miR-BARTs, as measured by 3'UTR-containing firefly luciferase (FLuc) expression, mRNA and protein levels, and knockdown of seven of the 10 candidate genes could suppress apoptosis, mimicking the effects of relevant miR-BARTs. On the other hand, in order to identify miR-BARTs that can activate the Wnt signaling pathway, I analyzed the PAR-CLIP data set of C666 cells and discovered nine anti-Wnt signaling targets of miR-BARTs, including seven novel genes and two pro-apoptotic genes identified above. Using FLuc 3'UTR indicator assays, I proved that the 3'UTRs of all seven newly identified anti-Wnt signaling genes were indeed targeted by the relevant miR-BARTs identified by PAR-CLIP. Utilizing a Wnt signaling FLuc reporter TOPflash which measures the Wnt signaling activation, I confirmed that expression of many miR-BARTs that target Wnt signaling inhibitors can indeed upregulate the Wnt signaling pathway. Together, my results identified and validated a substantial number of novel targets of miR-BARTs involved in apoptosis and the Wnt signaling pathway, indicating that EBV may employ miR-BARTs to heavily target these two pathways to facilitate chronic infection.
机译:爱泼斯坦-巴尔病毒(EBV)是一种普遍存在的人类伽马疱疹病毒,长期感染全球95%以上的人口,并会在B细胞和上皮细胞中引起许多恶性肿瘤。在EBV潜伏感染的上皮细胞(如鼻咽癌(NPC)和胃癌(GaCa)细胞)中,病毒蛋白表达较低。相比之下,称为miR-BARTs的病毒microRNA(miRNA)簇高度表达。 MiRNA是小的非编码RNA,可通过与mRNA中的互补序列结合来调节基因表达。 miR-BARTs可能在EBV感染的上皮细胞中起着至关重要的作用,但是目前缺乏对miR-BARTs的全面了解。在这里,我目前进行两项利用表型和靶标方法的研究,以证明miR-BARTs可以抑制细胞凋亡并激活Wnt信号通路。为了发现可以抑制细胞凋亡的miR-BART,我在EBV-GaCa细胞系AGS中单独表达了miR-BART,并鉴定了五种赋予该表型的miR-BART。为了鉴定由五个抗凋亡miRNA靶向的促凋亡基因,我验证了一个先前发表的靶标,并通过在EBV + NPC细胞系C666中进行光活化核糖核苷增强的交联和免疫沉淀(PAR-CLIP)鉴定了九个新靶标。接下来,我彻底证明了10个候选靶基因被相关miR-BARTs的表达所基本抑制,这通过含3'UTR的萤火​​虫荧光素酶(FLuc)表达,mRNA和蛋白质水平以及10个中的7个的敲低来测量候选基因可以抑制细胞凋亡,模仿相关的miR-BARTs的作用。另一方面,为了鉴定可以激活Wnt信号通路的miR-BART,我分析了C666细胞的PAR-CLIP数据集,发现了9个miR-BARTs的抗Wnt信号靶,包括七个新基因和两个上面鉴定的促凋亡基因。使用FLuc 3'UTR指示剂检测,我证明了所有七个新发现的抗Wnt信号转导基因的3'UTR确实是由PAR-CLIP鉴定的相关miR-BART靶向的。利用测量Wnt信号激活的Wnt信号FLuc报告基因TOPflash,我证实了许多靶向Wnt信号抑制剂的miR-BARTs的表达确实可以上调Wnt信号通路。在一起,我的结果确定并验证了许多参与凋亡和Wnt信号通路的miR-BARTs的新靶标,表明EBV可能利用miR-BARTs大量靶向这两个通路来促进慢性感染。

著录项

  • 作者

    Kang, Dong.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Molecular biology.;Oncology.;Microbiology.;Psychobiology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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