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The tracrRNA and Cas9 families of type II CRISPR-Cas immunity systems

机译:II型CRISPR-Cas免疫系统的tracrRNA和Cas9家族

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摘要

CRISPR-Cas is a rapidly evolving RNA-mediated adaptive immune system that protects bacteria and archaea against mobile genetic elements. The system relies on the activity of short mature CRISPR RNAs (crRNAs) that guide Cas protein(s) to silence invading nucleic acids. A set of CRISPR-Cas, type II, requires a trans-activating small RNA, tracrRNA, for maturation of precursor crRNA (pre-crRNA) and interference with invading sequences. Following co-processing of tracrRNA and pre-crRNA by RNase III, dual-tracrRNA:crRNA guides the CRISPR-associated endonuclease Cas9 (Csn1) to cleave site-specifically cognate target DNA. Here, we screened available genomes for type II CRISPR-Cas loci by searching for Cas9 orthologs. We analyzed 75 representative loci, and for 56 of them we predicted novel tracrRNA orthologs. Our analysis demonstrates a high diversity in cas operon architecture and position of the tracrRNA gene within CRISPR-Cas loci. We observed a correlation between locus heterogeneity and Cas9 sequence diversity, resulting in the identification of various type II CRISPR-Cas subgroups. We validated the expression and co-processing of predicted tracrRNAs and pre-crRNAs by RNA sequencing in five bacterial species. This study reveals tracrRNA family as an atypical, small RNA family with no obvious conservation of structure, sequence or localization within type II CRISPR-Cas loci. The tracrRNA family is however characterized by the conserved feature to base-pair to cognate pre-crRNA repeats, an essential function for crRNA maturation and DNA silencing by dual-RNA:Cas9. The large panel of tracrRNA and Cas9 ortholog sequences should constitute a useful database to improve the design of RNA-programmable Cas9 as genome editing tool.
机译:CRISPR-Cas是一个快速发展的RNA介导的适应性免疫系统,可保护细菌和古细菌免受移动遗传元件的侵害。该系统依赖于指导Cas蛋白沉默入侵核酸的短成熟CRISPR RNA(crRNA)的活性。一组CRISPR-Cas II型需要反式激活小RNA tracrRNA,以使前体crRNA(pre-crRNA)成熟并干扰侵入序列。在通过RNase III对tracrRNA和pre-crRNA进行共处理后,双tracrRNA:crRNA引导CRISPR相关的核酸内切酶Cas9(Csn1)裂解位点特异性关联的目标DNA。在这里,我们通过搜索Cas9直系同源物筛选了II型CRISPR-Cas基因座的可用基因组。我们分析了75个代表性基因座,其中56个我们预测了新的tracrRNA直系同源基因。我们的分析表明,cas操纵子结构和tracrRNA基因在CRISPR-Cas基因座中的位置具有高度多样性。我们观察到基因座异质性与Cas9序列多样性之间的相关性,从而鉴定出各种II型CRISPR-Cas亚组。我们通过在五个细菌物种中进行RNA测序验证了预测的tracrRNA和pre-crRNA的表达和协同加工。这项研究揭示了tracrRNA家族是一个非典型的小RNA家族,在II型CRISPR-Cas基因座内没有明显的结构,序列或定位保守性。但是,tracrRNA家族的特征是保守的碱基配对同源cr-pre-crRNA重复序列,这是crRNA成熟和双RNA:Cas9 DNA沉默的基本功能。大量的tracrRNA和Cas9直系同源序列应该构成一个有用的数据库,以改善RNA可编程Cas9作为基因组编辑工具的设计。

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