首页> 美国卫生研究院文献>Nucleic Acids Research >In cell mutational interference mapping experiment (in cell MIME) identifies the 5′ polyadenylation signal as a dual regulator of HIV-1 genomic RNA production and packaging
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In cell mutational interference mapping experiment (in cell MIME) identifies the 5′ polyadenylation signal as a dual regulator of HIV-1 genomic RNA production and packaging

机译:在细胞突变干扰定位实验中(在MIME中)将5聚腺苷酸化信号鉴定为HIV-1基因组RNA生产和包装的双重调节剂

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摘要

Non-coding RNA regulatory elements are important for viral replication, making them promising targets for therapeutic intervention. However, regulatory RNA is challenging to detect and characterise using classical structure-function assays. Here, we present in cell Mutational Interference Mapping Experiment (in cell MIME) as a way to define RNA regulatory landscapes at single nucleotide resolution under native conditions. In cell MIME is based on (i) random mutation of an RNA target, (ii) expression of mutated RNA in cells, (iii) physical separation of RNA into functional and non-functional populations, and (iv) high-throughput sequencing to identify mutations affecting function. We used in cell MIME to define RNA elements within the 5′ region of the HIV-1 genomic RNA (gRNA) that are important for viral replication in cells. We identified three distinct RNA motifs controlling intracellular gRNA production, and two distinct motifs required for gRNA packaging into virions. Our analysis reveals the 73AAUAAA78 polyadenylation motif within the 5′ PolyA domain as a dual regulator of gRNA production and gRNA packaging, and demonstrates that a functional polyadenylation signal is required for viral packaging even though it negatively affects gRNA production.
机译:非编码RNA调控元件对于病毒复制非常重要,使其成为治疗干预的有希望的靶标。但是,使用经典的结构功能测定法来检测和表征调节性RNA具有挑战性。在这里,我们在细胞突变干扰映射实验(在细胞MIME中)中提出了一种在自然条件下以单核苷酸分辨率定义RNA调控景观的方法。细胞内MIME基于(i)RNA靶点的随机突变,(ii)细胞中突变的RNA的表达,(iii)RNA物理分离为功能性和非功能性群体以及(iv)高通量测序识别影响功能的突变。我们在细胞MIME中使用它来定义HIV-1基因组RNA(gRNA)5'区域内的RNA元素,这些元素对于细胞中的病毒复制非常重要。我们确定了控制细胞内gRNA产生的三个不同的RNA图案,以及gRNA包装入病毒体所需的两个不同的图案。我们的分析揭示了5'PolyA域内的 73 AAUAAA 78 聚腺苷酸化基序是gRNA生产和gRNA包装的双重调节剂,并表明功能性聚腺苷酸化信号对于病毒包装,即使会对gRNA产生负面影响。

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