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首页> 外文期刊>Nucleic Acids Research >Haloarcula hispanica CRISPR authenticates PAM of a target sequence to prime discriminative adaptation
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Haloarcula hispanica CRISPR authenticates PAM of a target sequence to prime discriminative adaptation

机译:Haloarcula hispanica CRISPR验证靶序列的PAM进行判别性适应

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The prokaryotic immune system CRISPR/Cas (Clustered Regularly Interspaced Short Palindromic Repeats/CRISPR-associated genes) adapts to foreign invaders by acquiring their short deoxyribonucleic acid (DNA) fragments as spacers, which guide subsequent interference to foreign nucleic acids based on sequence matching. The adaptation mechanism avoiding acquiring 'self' DNA fragments is poorly understood. In Haloarcula hispanica, we previously showed that CRISPR adaptation requires being primed by a pre-existing spacer partially matching the invader DNA. Here, we further demonstrate that flanking a fully-matched target sequence, a functional PAM (protospacer adjacent motif) is still required to prime adaptation. Interestingly, interference utilizes only four PAM sequences, whereas adaptation-priming tolerates as many as 23 PAM sequences. This relaxed PAM selectivity explains how adaptation-priming maximizes its tolerance of PAM mutations (that escape interference) while avoiding mis-targeting the spacer DNA within CRISPR locus. We propose that the primed adaptation, which hitches and cooperates with the interference pathway, distinguishes target from non-target by CRISPR ribonucleic acid guidance and PAM recognition
机译:原核免疫系统CRISPR / Cas(聚簇的规则间隔的短回文重复序列/ CRISPR相关基因)通过获取短的脱氧核糖核酸(DNA)片段作为间隔子来适应外来入侵者,从而基于序列匹配指导随后对外来核酸的干扰。避免获得“自身” DNA片段的适应机制了解甚少。在西班牙裔的嗜盐藻中,我们先前表明,CRISPR的适应性需要通过预先存在的与入侵者DNA部分匹配的间隔子来启动。在这里,我们进一步证明,在完全匹配的靶序列两侧,功能性PAM(原间隔子相邻基序)仍是引发适应的必要条件。有趣的是,干扰仅利用了四个PAM序列,而自适应启动可容忍多达23个PAM序列。这种轻松的PAM选择性说明了适应引物如何最大程度地提高其对PAM突变的耐受性(避免干扰),同时避免将CRISPR基因座中的间隔区DNA误定位。我们建议,通过CRISPR核糖核酸指导和PAM识别,引发并与干扰途径配合的启动适应将目标与非目标区分开

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