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首页> 外文期刊>RNA biology >Major and minor crRNA annealing sites facilitate low stringency DNA protospacer binding prior to Type I-A CRISPR-Cas interference in Sulfolobus
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Major and minor crRNA annealing sites facilitate low stringency DNA protospacer binding prior to Type I-A CRISPR-Cas interference in Sulfolobus

机译:主要和次要crRNA退火位点有助于在I-A CRISPR-Cas干扰Sulfolobus之前进行低严格性DNA原间隔子结合

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摘要

The stringency of crRNA-protospacer DNA base pair matching required for effective CRISPR-Cas interference is relatively low in crenarchaeal Sulfolobus species in contrast to that required in some bacteria. To understand its biological significance we studied crRNA-protospacer interactions in Sulfolobus islandicus REY15A which carries multiple, and functionally diverse, interference complexes. A range of mismatches were introduced into a vector-borne protospacer that was identical to spacer 1 of CRISPR locus 2, with a cognate CCN PAM sequence. Two important crRNA annealing regions were identified on the 39bp protospacer, a strong primary site centered on nucleotides 3 - 7 and a weaker secondary site at nucleotides 21 - 25. Multiple mismatches introduced into remaining protospacer regions did not seriously impair interference. Extending the study to different protospacers demonstrated that the efficacy of the secondary site was greatest for protospacers with higher G+C contents. In addition, the interference effects were assigned specifically to the type I-A dsDNA-targeting module by repeating the experiments with mutated protospacer constructs that were transformed into an S. islandicus mutant lacking type III-B and III-B interference gene cassettes, which showed similar interference levels to those of the wild-type strain. Parallels are drawn to the involvement of 2 annealing sites for microRNAs on some eukaryal mRNAs which provide enhanced binding capacity and specificity. A biological rationale for the relatively low crRNA-protospacer base pairing stringency among the Sulfolobales is considered.
机译:与某些细菌相比,Crnarchaeal Sulfolobus物种中,有效的CRISPR-Cas干扰所需的crRNA-protospacer DNA碱基对匹配的严格性相对较低。为了了解其生物学意义,我们研究了Sulfolobus islandicus REY15A中的crRNA-protospacer相互作用,该酶携带多种功能上不同的干扰复合物。一系列错配被引入到载体传播的原型间隔子中,该间隔子与CRISPR基因座2的间隔子1相同,具有同源的CCN PAM序列。在39bp的原型间隔区上鉴定出两个重要的crRNA退火区,一个强的主要位点位于核苷酸3-7中心,而一个较弱的次级位点位于核苷酸21-25处。引入剩余的原型间隔区的多重错配不会严重削弱干扰。将研究扩展到不同的原间隔物表明,对于G + C含量较高的原间隔物,二级位点的功效最大。此外,通过用突变的原间隔子构建体重复实验,将干扰效应专门分配给IA型dsDNA靶向模块,该构建体被转化为缺乏III-B和III-B型干扰基因盒的S. islandicus突变体,显示出相似的结果对野生型菌株的干扰水平。平行地涉及在一些真核mRNA上microRNA的2个退火位点的参与,其提供增强的结合能力和特异性。考虑到磺基青霉菌中相对较低的crRNA-原间隔子碱基配对严格性的生物学原理。

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