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Identification of murine gammaherpesvirus 68 miRNA-mRNA hybrids reveals miRNA target conservation among gammaherpesviruses including host translation and protein modification machinery

机译:鼠标γ-phesvirus 68 miRNA-mRNA杂种的鉴定揭示了γpesviruses之间的miRNA靶卫生,包括宿主翻译和蛋白质改性机械

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Gammaherpesviruses, including the human pathogens Epstein-Barr virus (EBV) and Kaposi’s sarcoma-associated herpesvirus (KSHV), establish lifelong latent infection in B cells and are associated with a variety of tumors. In addition to protein coding genes, these viruses encode numerous microRNAs (miRNAs) within their genomes. While putative host targets of EBV and KSHV miRNAs have been previously identified, the specific functions of these miRNAs during in vivo infection are largely unknown. Murine gammaherpesvirus 68 (MHV68) is a natural pathogen of rodents that is genetically related to both EBV and KSHV, and thus serves as an excellent model for the study of EBV and KSHV genetic elements such as miRNAs in the context of infection and disease. However, the specific targets of MHV68 miRNAs remain completely unknown. Using a technique known as qCLASH (quick crosslinking, ligation, and sequencing of hybrids), we have now identified thousands of Ago-associated, direct miRNA-mRNA interactions during lytic infection, latent infection and reactivation from latency. Validating this approach, detailed molecular analyses of specific interactions demonstrated repression of numerous host mRNA targets of MHV68 miRNAs, including Arid1a , Ctsl , Ifitm3 and Phc3 . Notably, of the 1,505 MHV68 miRNA-host mRNA targets identified in B cells, 86% were shared with either EBV or KSHV, and 64% were shared among all three viruses, demonstrating significant conservation of gammaherpesvirus miRNA targeting. Pathway analysis of MHV68 miRNA targets further revealed enrichment of cellular pathways involved in protein synthesis and protein modification, including eIF2 Signaling, mTOR signaling and protein ubiquitination, pathways also enriched for targets of EBV and KSHV miRNAs. These findings provide substantial new information about specific targets of MHV68 miRNAs and shed important light on likely conserved functions of gammaherpesvirus miRNAs.
机译:Gammaherpesviruses,包括人类病原体Epstein-Barr病毒(EBV)和Kaposi的肉瘤相关的Herpesvirus(KSHV),在B细胞中建立终身潜入感染,并与各种肿瘤相关。除了蛋白质编码基因之外,这些病毒还在其基因组内编码了许多微小RNA(miRNA)。虽然先前已经识别出推定的宿主靶标的EBV和KSHV miRNA,但在体内感染期间这些miRNA的特定功能在很大程度上。鼠γHerpesvirus68(MHV68)是啮齿动物的天然病原体,其与EBV和KSHV遗传相关,因此用作在感染和疾病的背景下研究EBV和KSHV遗传元件如MiRNA的优异模型。然而,MHV68 miRNA的特定目标仍然完全未知。使用称为Qclash的技术(快速交联,连接和杂种的测序),我们现在已经鉴定了数千以前相关的,直接的miRNA-mRNA相互作用,延迟潜伏感染和再活化。验证这种方法,具体相互作用的详细分子分析证明了MHV68 MiRNA的许多宿主mRNA靶的抑制,包括Arid1a,CTSL,IFITM3和PHC3。值得注意的是,在B细胞中鉴定的1,505MHV68 miRNA-宿主mRNA靶标,86%与EBV或KSHV共用,64%在所有三种病毒中共用,展示了Gammaherpesvirus miRNA靶向的显着保护。 MHV68 miRNA靶的途径分析进一步揭示了蛋白质合成和蛋白质修饰中涉及的细胞途径的富集,包括EIF2信号传导,MTOR信号传导和蛋白质泛素,也富集EBV和KSHV MiRNA的靶标。这些发现提供了有关MHV68 MIRNA的特定目标的大量新信息,并在可能的γHESPesvirusmiRNA的保护功能上阐明了重要的光。

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