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Next-Generation Sequencing Analysis Reveals Differential Expression Profiles of MiRNA-mRNA Target Pairs in KSHV-Infected Cells

机译:下一代测序分析揭示了KSHV感染细胞中的miRNA-mRNA靶对的差异表达谱。

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摘要

Kaposi’s sarcoma associated herpesvirus (KSHV) causes several tumors, including primary effusion lymphoma (PEL) and Kaposi’s sarcoma (KS). Cellular and viral microRNAs (miRNAs) have been shown to play important roles in regulating gene expression. A better knowledge of the miRNA-mediated pathways affected by KSHV infection is therefore important for understanding viral infection and tumor pathogenesis. In this study, we used deep sequencing to analyze miRNA and cellular mRNA expression in a cell line with latent KSHV infection (SLKK) as compared to the uninfected SLK line. This approach revealed 153 differentially expressed human miRNAs, eight of which were independently confirmed by qRT-PCR. KSHV infection led to the dysregulation of ~15% of the human miRNA pool and most of these cellular miRNAs were down-regulated, including nearly all members of the 14q32 miRNA cluster, a genomic locus linked to cancer and that is deleted in a number of PEL cell lines. Furthermore, we identified 48 miRNAs that were associated with a total of 1,117 predicted or experimentally validated target mRNAs; of these mRNAs, a majority (73%) were inversely correlated to expression changes of their respective miRNAs, suggesting miRNA-mediated silencing mechanisms were involved in a number of these alterations. Several dysregulated miRNA-mRNA pairs may facilitate KSHV infection or tumor formation, such as up-regulated miR-708-5p, associated with a decrease in pro-apoptotic caspase-2 and leukemia inhibitory factor LIF, or down-regulated miR-409-5p, associated with an increase in the p53-inhibitor MDM2. Transfection of miRNA mimics provided further evidence that changes in miRNAs are driving some observed mRNA changes. Using filtered datasets, we also identified several canonical pathways that were significantly enriched in differentially expressed miRNA-mRNA pairs, such as the epithelial-to-mesenchymal transition and the interleukin-8 signaling pathways. Overall, our data provide a more detailed understanding of KSHV latency and guide further studies of the biological significance of these changes.
机译:卡波西氏肉瘤相关疱疹病毒(KSHV)引起多种肿瘤,包括原发性渗出性淋巴瘤(PEL)和卡波西氏肉瘤(KS)。细胞和病毒microRNA(miRNA)已显示在调节基因表达中起重要作用。因此,更好地了解受KSHV感染影响的miRNA介导的途径对于了解病毒感染和肿瘤的发病机理很重要。在这项研究中,我们使用深度测序来分析与未感染的SLK株相比,具有潜伏性KSHV感染(SLKK)的细胞株中miRNA和细胞mRNA的表达。该方法揭示了153个差异表达的人类miRNA,其中8个是通过qRT-PCR独立证实的。 KSHV感染导致约15%的人类miRNA库失调,并且大多数这些细胞miRNA均下调,包括几乎所有14q32 miRNA簇成员(与癌症相关的基因组位点),在许多PEL细胞系。此外,我们鉴定了48个miRNA,它们与总共1,117个预测或实验验证的目标mRNA相关。在这些mRNA中,大多数(73%)与它们各自的miRNA的表达变化呈反相关,这表明miRNA介导的沉默机制参与了许多这些变化。几种失调的miRNA-mRNA对可能促进KSHV感染或肿瘤形成,例如上调的miR-708-5p,与促凋亡的caspase-2和白血病抑制因子LIF的降低有关,或下调的miR-409- 5p,与p53抑制剂MDM2的增加有关。 miRNA模拟物的转染提供了进一步的证据,证明miRNA的变化正在驱动某些观察到的mRNA变化。使用筛选的数据集,我们还确定了差异表达的miRNA-mRNA对中显着丰富的几种经典途径,例如上皮-间充质转化和白介素8信号传导途径。总体而言,我们的数据提供了对KSHV潜伏期的更详细了解,并指导了这些变化的生物学意义的进一步研究。

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