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The 5′-end heterogeneity of adenovirus virus-associated RNAI contributes to the asymmetric guide strand incorporation into the RNA-induced silencing complex

机译:腺病毒相关RNAI的5端异质性有助于将不对称引导链掺入RNA诱导的沉默复合物中

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摘要

Human Adenovirus type 5 encodes two short RNA polymerase III transcripts, the virus-associated (VA) RNAI and VA RNAII, which can adopt stable hairpin structures that resemble micro-RNA precursors. The terminal stems of the VA RNAs are processed into small RNAs (mivaRNAs) that are incorporated into RISC. It has been reported that VA RNAI has two transcription initiation sites, which produce two VA RNAI species; a major species, VA RNAI(G), which accounts for 75% of the VA RNAI pool, and a minor species, VA RNAI(A), which initiates transcription three nucleotides upstream compared to VA RNAI(G). We show that this 5′-heterogeneity results in a dramatic difference in RISC assembly. Thus, both VA RNAI(G) and VA RNAI(A) are processed by Dicer at the same position in the terminal stem generating the same 3′-strand mivaRNA. This mivaRNA is incorporated into RISC with 200-fold higher efficiency compared to the 5′-strand of mivaRNAI. Of the small number of 5′-strands used in RISC assembly only VA RNAI(A) generated active RISC complexes. We also show that the 3′-strand of mivaRNAI, although being the preferred substrate for RISC assembly, generates unstable RISC complexes with a low in vitro cleavage activity, only around 2% compared to RISC assembled on the VA RNAI(A) 5′-strand.
机译:5型人类腺病毒编码两个短的RNA聚合酶III转录本,即病毒相关(VA)RNAI和VA RNAII,它们可以采用类似于micro-RNA前体的稳定发夹结构。 VA RNA的末端茎被加工成小RNA(mivaRNA),并被整合到RISC中。据报道,VA RNAI具有两个转录起始位点,其产生两个VA RNAI种类。主要种类是VA RNAI(G),占VA RNAI库的75%;次要种类是VA RNAI(A),与VA RNAI(G)相比,它起始上游三个核苷酸的转录。我们表明,这种5'异质性导致RISC组装的巨大差异。因此,VA RNAI(G)和VA RNAI(A)均由切丁机在末端茎中相同位置处进行加工,从而产生相同的3'链mivaRNA。与mivaRNAI的5'链相比,该mivaRNA以200倍的高效率整合到RISC中。在RISC组装中使用的少量5'链中,只有VA RNAI(A)产生了活性RISC复合物。我们还显示,虽然mivaRNAI的3'链是RISC组装的首选底物,但它生成的RISC复合物不稳定,体外裂解活性低,与在VA RNAI(A)5'上组装的RISC相比,仅约2% -绞线。

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