Institute of Human Virology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, Guangdong 510080, China.
Retrovirology. 2014 Mar 12;11:23. doi: 10.1186/1742-4690-11-23.
A lot of microRNAs (miRNAs) derived from viral genomes have been identified. Many of them play various important roles in virus replication and virus-host interaction. Cellular miRNAs have been shown to participate in the regulation of HIV-1 viral replication, while the role of viral-encoded miRNAs in this process is largely unknown.
In this report, through a strategy combining computational prediction and deep sequencing, we identified a novel HIV-1-encoded miRNA, miR-H3. MiR-H3 locates in the mRNA region encoding the active center of reverse transcriptase (RT) and exhibits high sequence conservation among different subtypes of HIV-1 viruses. Overexpression of miR-H3 increases viral production and the mutations in miR-H3 sequence significantly impair the viral replication of wildtype HIV-1 viruses, suggesting that it is a replication-enhancing miRNA. MiR-H3 upregulates HIV-1 RNA transcription and protein expression. A serial deletion assay suggests that miR-H3 targets HIV-1 5' LTR and upregulates the promoter activity. It interacts with the TATA box in HIV-1 5' LTR and sequence-specifically activates the viral transcription. In addition, chemically-synthesized small RNAs targeting HIV-1 TATA box activate HIV-1 production from resting CD4+ T cells isolated from HIV-1-infected patients on suppressive highly active antiretroviral therapy (HAART).
We have identified a novel HIV-1-encoded miRNA which specifically enhances viral production and provide a specific method to activate HIV-1 latency.
已经鉴定出许多源自病毒基因组的 microRNAs (miRNAs)。其中许多在病毒复制和病毒-宿主相互作用中发挥着各种重要作用。细胞 miRNAs 已被证明参与 HIV-1 病毒复制的调节,而病毒编码的 miRNAs 在这个过程中的作用在很大程度上是未知的。
在本报告中,我们通过结合计算预测和深度测序的策略,鉴定出一种新型 HIV-1 编码的 miRNA,即 miR-H3。miR-H3 位于编码逆转录酶(RT)活性中心的 mRNA 区域,在不同 HIV-1 病毒亚型中表现出高度的序列保守性。miR-H3 的过表达会增加病毒的产生,并且 miR-H3 序列中的突变会显著损害野生型 HIV-1 病毒的复制,这表明它是一种增强复制的 miRNA。miR-H3 上调 HIV-1 RNA 转录和蛋白表达。一系列缺失实验表明,miR-H3 靶向 HIV-1 5'LTR 并上调启动子活性。它与 HIV-1 5'LTR 中的 TATA 框相互作用,并通过序列特异性激活病毒转录。此外,针对 HIV-1 TATA 框的化学合成小 RNA 可从接受抑制性高效抗逆转录病毒治疗 (HAART) 的 HIV-1 感染患者中分离出的静止 CD4+T 细胞中激活 HIV-1 的产生。
我们已经鉴定出一种新型 HIV-1 编码的 miRNA,它可以特异性地增强病毒的产生,并提供了一种激活 HIV-1 潜伏的特异性方法。