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CRISPRrepeat sequences and relative spacing specify DNA integration by Pyrococcus furiosus Cas1 and Cas2

机译:Crisprepeat序列和相对间隔用Pyrococcus Furoiosus Cas1和Cas2指定DNA集成

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摘要

Acquiring foreign spacer DNA into the CRISPR locus is an essential primary step of the CRISPR-Cas pathway in prokaryotes for developing host immunity to mobile genetic elements. Here, we investigate spacer integration in vitro using proteins from Pyrococcus furiosus and demonstrate that Cas1 and Cas2 are sufficient to accurately integrate spacers into a minimal CRISPR locus. Using high-throughput sequencing, we identified high frequency spacer integration occurring at the same CRISPR repeat border sites utilized in vivo, as well as at several non-CRISPR plasmid sequences which share features with repeats. Analysis of non-CRISPR integration sites revealed that Cas1 and Cas2 are directed to catalyze full-site spacer integration at specific DNA stretches where guanines and/or cytosines are 30 base pairs apart and the intervening sequence harbors several positionally conserved bases. Moreover, assaying a series of CRISPR repeat mutations, followed by sequencing of the integration products, revealed that the specificity of integration is primarily directed by sequences at the leader-repeat junction as well as an adenine-rich sequence block in the mid-repeat. Together, our results indicate that P. furiosus Cas1 and Cas2 recognize multiple sequence features distributed over a 30 base pair DNA region for accurate spacer integration at the CRISPR repeat.
机译:在CRISPR基因座中获取外垫片DNA是用于在移动遗传元素中发育宿主免疫的原核生物中CRISPR-CAS途径的基本初级步骤。在这里,我们使用来自Pyrococcus furoiosus的蛋白质来调查体外的间隔集成,并证明Cas1和Cas2足以将间隔物精确地整合到最小的CRISP基因座中。使用高通量测序,我们确定了在体内使用的相同CRISPR重复边界站点中发生的高频间隔集成,以及几种非CRISPR质粒序列,其具有重复的特征。非CRISPR集成站点的分析显示,CAS1和CAS2旨在催化在特定DNA延伸的全部位点间隔集成,其中牙脉和/或胞嘧啶是30个碱基对分开,介入序列镶嵌几个位置保守的碱。此外,测定一系列CRISPR重复突变,然后对整合产品进行测序,揭示了整合的特异性主要是通过前端重复交叉点的序列引导,以及中间重复中的富含腺嘌呤的序列块。我们的结果表明,P. furiosus Cas1和Cas2识别分布在30个碱基对DNA区域上的多个序列特征,以便在CRISPR重复时精确地集成。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第14期|共14页
  • 作者单位

    Univ Georgia Dept Microbiol Athens GA 30602 USA;

    UConn Hlth UConn Stem Cell Inst Inst Syst Genom Dept Genet &

    Genome Sci Farmington CT 06030 USA;

    UConn Hlth UConn Stem Cell Inst Inst Syst Genom Dept Genet &

    Genome Sci Farmington CT 06030 USA;

    Univ Georgia Dept Microbiol Athens GA 30602 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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