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首页> 外文期刊>The Journal of biological chemistry >Mechanism of HIV-1 RNA Dimerization in the Central Region of the Genome and Significance for Viral Evolution
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Mechanism of HIV-1 RNA Dimerization in the Central Region of the Genome and Significance for Viral Evolution

机译:基因组中心区域HIV-1 RNA二聚化机制及病毒演化的意义

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The genome of HIV-1 consists of two identical or nearly identical RNA molecules. The RNA genomes are held in the same, parallel orientation by interactions at the dimer initiation site (DIS). Previous studies showed that in addition to interactions at DIS, sequences located 100 nucleotides downstream from the 5′ splice site can dimerize in vitro through an intermolecular G-quartet structure. Here we report that the highly conserved G-rich sequence in the middle portion of the HIV-1 genome near the central polypurine tract (cPPT) dimerizes spontaneously under high ionic strength in the absence of protein. The antisense RNA does not dimerize, strongly indicating that RNA dimerization does not exclusively involve A:U and G:C base pairing. The cation-dependent reverse transcriptase pausing profile, CD spectra profile, and cation-dependent association and thermal dissociation characteristics indicate G-quartet structures. Different forms of G-quartets are formed including monomers and, significantly, intermolecular dimers. Our results indicate that RNA genome dimerization and parallel alignment initiated through interactions at DIS may be greatly expanded and stabilized by formation of an intermolecular G-quartet at a distant site near the cPPT. It is likely that formation of G-quartet structure near the cPPT in vivo keeps the RNA genomes in proximity over a long range, promoting genetic recombination in numerous hot spots.
机译:HIV-1的基因组由两个相同或几乎相同的RNA分子组成。通过二聚体引发位点(DIS)的相互作用相同,RNA基因组保持相同的平行取向。以前的研究表明,除了在DIS的相互作用之外,位于5'接头位点下游的100个核苷酸的序列也可以通过分子间G-四肉结构在体外二聚化。在这里,我们报告说,在中央多藻素道(CPPT)附近的HIV-1基因组中间部分中的高度保守的G-序列在没有蛋白质的情况下在高离子强度下自发地二胺。反义RNA没有二聚体,强烈表明RNA二聚化不能仅涉及A:U和G:C碱基配对。依赖于阳离子逆转录酶暂停曲线,CD光谱谱和阳离子依赖性关联和热解离特性表示G-四重奏结构。形成不同形式的G-四胞胎,包括单体,并且显着地,分子间二聚体。我们的结果表明,通过在CPPT附近的远端位点形成分子间G-Quartet,通过在CPPT附近的远端位点形成,通过在CPPT附近的远端部位形成并稳定,通过相互作用引发的RNA基因组二聚化和平行对准。在体内CPPT附近的G-Quartet结构的形成可能使RNA基因组在很远的范围内保持邻近,促进许多热点中的遗传重组。

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