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An archaeal CRISPR type III-B system exhibiting distinctive RNA targeting features and mediating dual RNA and DNA interference

机译:一种古细菌CRISPR III-B型系统,具有独特的RNA靶向功能并介导RNA和DNA双重干扰

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摘要

CRISPR-Cas systems provide a small RNA-based mechanism to defend against invasive genetic elements in archaea and bacteria. To investigate the in vivo mechanism of RNA interference by two type III-B systems (Cmr-alpha and Cmr-beta) in Sulfolobus islandicus, a genetic assay was developed using plasmids carrying an artificial mini-CRISPR (AC) locus with a single spacer. After pAC plasmids were introduced into different strains, Northern analyses confirmed that mature crRNAs were produced from the plasmid-borne CRISPR loci, which then guided gene silencing to target gene expression. Spacer mutagenesis identified a trinucleotide sequence in the 3'-region of crRNA that was crucial for RNA interference. Studying mutants lacking Cmr-alpha or Cmr-beta system showed that each Cmr complex exhibited RNA interference. Strikingly, these analyses further revealed that the two Cmr systems displayed distinctive interference features. Whereas Cmr-beta complexes targeted transcripts and could be recycled in RNA cleavage, Cmr-alpha complexes probably targeted nascent RNA transcripts and remained associated with the substrate. Moreover, Cmr-beta exhibited much stronger RNA cleavage activity than Cmr-alpha. Since we previously showed that S. islandicus Cmr-alpha mediated transcription-dependent DNA interference, the Cmr-alpha constitutes the first CRISPR system exhibiting dual targeting of RNA and DNA.
机译:CRISPR-Cas系统提供了一种基于RNA的小型机制,可以防御古细菌和细菌中的侵入性遗传元素。为了研究在Sulfolobus islandicus中两个III-B型系统(Cmr-alpha和Cmr-beta)引起的RNA干扰的体内机制,使用携带带有单个间隔子的人工mini-CRISPR(AC)基因座的质粒开发了一种遗传检测方法。将pAC质粒引入不同菌株后,Northern分析证实从质粒携带的CRISPR基因座产生了成熟的crRNA,然后将基因沉默引导至目标基因表达。间隔物诱变鉴定出crRNA 3'-区中的三核苷酸序列,这对RNA干扰至关重要。研究缺少Cmr-alpha或Cmr-beta系统的突变体表明,每种Cmr复合物均表现出RNA干扰。令人惊讶的是,这些分析进一步揭示了两个Cmr系统显示出独特的干扰特征。尽管Cmr-β复合物以转录物为靶标并可以在RNA切割中回收,但Cmr-α复合物可能以新生的RNA转录物为靶标,并仍与底物结合。此外,Cmr-beta表现出比Cmr-alpha更强的RNA裂解活性。由于我们先前显示了岛链球菌Cmr-α介导的转录依赖性DNA干扰,因此Cmr-alpha构成了第一个展示RNA和DNA双重靶向的CRISPR系统。

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