首页> 外文期刊>Scientific reports. >Efficient HIV-1 inhibition by a 16 nt-long RNA aptamer designed by combining in vitro selection and in silico optimisation strategies
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Efficient HIV-1 inhibition by a 16 nt-long RNA aptamer designed by combining in vitro selection and in silico optimisation strategies

机译:通过在Silico 优化策略中组合在体外的选择和,通过组合的16nt-long RNA适体抑制抑制16nt-long的RNA适体抑制

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The human immunodeficiency virus type-1 (HIV-1) genome contains multiple, highly conserved structural RNA domains that play key roles in essential viral processes. Interference with the function of these RNA domains either by disrupting their structures or by blocking their interaction with viral or cellular factors may seriously compromise HIV-1 viability. RNA aptamers are amongst the most promising synthetic molecules able to interact with structural domains of viral genomes. However, aptamer shortening up to their minimal active domain is usually necessary for scaling up production, what requires very time-consuming, trial-and-error approaches. Here we report on the in vitro selection of 64 nt-long specific aptamers against the complete 5′-untranslated region of HIV-1 genome, which inhibit more than 75% of HIV-1 production in a human cell line. The analysis of the selected sequences and structures allowed for the identification of a highly conserved 16 nt-long stem-loop motif containing a common 8 nt-long apical loop. Based on this result, an in silico designed 16 nt-long RNA aptamer, termed RNApt16, was synthesized, with sequence 5′-CCCCGGCAAGGAGGGG-3′. The HIV-1 inhibition efficiency of such an aptamer was close to 85%, thus constituting the shortest RNA molecule so far described that efficiently interferes with HIV-1 replication.
机译:人免疫缺陷病毒型-1(HIV-1)基因组含有多重高度保守的结构RNA结构域,其在基本病毒过程中起关键作用。通过破坏它们的结构或通过阻断它们与病毒或细胞因子的相互作用来干扰这些RNA结构域的功能可能严重损害HIV-1活力。 RNA适体是能够与病毒基因组结构结构域相互作用的最有前途的合成分子。然而,缩短其最小活跃域的Aptamer通常需要进行缩放生产,需要非常耗时,试验和误差方法。在这里,我们报告了对64个NT长特异性适体的体外选择,针对HIV-1基因组的完整5'非翻译区,其抑制人细胞系中超过75%的HIV-1生产。对所选择的序列和结构的分析允许鉴定含有共8nt长的顶端环的高度保守的16nt长茎环基序。基于该结果,合成了在硅中设计的16nt-long RNA适体,称为Rnapt16,序列5'-ccccggcaaggggggg-3'。这种适体的HIV-1抑制效率接近85%,从而构成到目前为止的最短的RNA分子,从而有效地干扰HIV-1复制。

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