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首页> 外文期刊>PLoS Pathogens >Global synonymous mutagenesis identifies cis-acting RNA elements that regulate HIV-1 splicing and replication
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Global synonymous mutagenesis identifies cis-acting RNA elements that regulate HIV-1 splicing and replication

机译:全局同义诱变鉴定了调节HIV-1拼接和复制的顺式作用RNA元素

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The ~9.5 kilobase HIV-1 genome contains RNA sequences and structures that control many aspects of viral replication, including transcription, splicing, nuclear export, translation, packaging and reverse transcription. Nonetheless, chemical probing and other approaches suggest that the HIV-1 genome may contain many more RNA secondary structures of unknown importance and function. To determine whether there are additional, undiscovered cis-acting RNA elements in the HIV-1 genome that are important for viral replication, we undertook a global silent mutagenesis experiment. Sixteen mutant proviruses containing clusters of ~50 to ~200 synonymous mutations covering nearly the entire HIV-1 protein coding sequence were designed and synthesized. Analyses of these mutant viruses resulted in their division into three phenotypic groups. Group 1 mutants exhibited near wild-type replication, Group 2 mutants exhibited replication defects accompanied by perturbed RNA splicing, and Group 3 mutants had replication defects in the absence of obvious splicing perturbation. The three phenotypes were caused by mutations that exhibited a clear regional bias in their distribution along the viral genome, and those that caused replication defects all caused reductions in the level of unspliced RNA. We characterized in detail the underlying defects for Group 2 mutants. Second-site revertants that enabled viral replication could be derived for Group 2 mutants, and generally contained point mutations that reduced the utilization of proximal splice sites. Mapping of the changes responsible for splicing perturbations in Group 2 viruses revealed the presence of several RNA sequences that apparently suppressed the use of cryptic or canonical splice sites. Some sequences that affected splicing were diffusely distributed, while others could be mapped to discrete elements, proximal or distal to the affected splice site(s). Overall, our data indicate complex negative regulation of HIV-1 splicing by RNA elements in various regions of the HIV-1 genome that enable balanced splicing and viral replication.
机译:〜9.5千碱基HIV-1基因组含有RNA序列和控制病毒复制的许多方面的结构,包括转录,剪接,核导出,翻译,包装和逆转录。尽管如此,化学探测和其他方法表明HIV-1基因组可能含有许多未知重要性和功能的RNA二次结构。为了确定是否存在额外的,未被发现的CIS作用RNA元素,对于病毒复制很重要,我们进行了全局静音诱变实验。设计和合成了覆盖覆盖整个HIV-1蛋白编码序列的含有〜50至200〜200同义突变的簇的十六个突变体潜水术。这些突变病毒的分析导致它们分为三种表型基团。第1组突变体在野生型复制附近表现出,第2组突变体表现出伴有扰动的RNA剪接的复制缺陷,并且第3组突变体在没有明显剪接扰动的情况下具有复制缺陷。这三种表型是由突变引起的突变,即沿着病毒基因组的分布表现出明确的区域偏见,以及导致复制缺陷的那些引起的缺陷缺陷导致未燃烧的RNA水平降低。我们详细描述了第2组突变体的潜在缺陷。可以为第2组突变体导出使能病毒复制的第二站点雷差,并且通常包含减少近端接头位点的利用的点突变。负责第2组病毒剪接扰动的变化的映射揭示了几种RNA序列的存在,显然抑制了隐秘或规范剪接位点的使用。一些受影响剪接的序列被漫射分布,而其他序列可以映射到受影响的接头位点的离散元件,近端或远端。总体而言,我们的数据表明HIV-1在HIV-1基因组的各个区域中的RNA元素拼接复杂的阴性调节,其能够平衡剪接和病毒复制。

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