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Comparative genomics and evolution of trans-activating RNAs in Class 2 CRISPR-Cas systems

机译:2级CISPR-CAS系统中跨活化RNA的比较基因组学与演化

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摘要

Trans-activating CRISPR (tracr) RNA is a distinct RNA species that interacts with the CRISPR (cr) RNA to form the dual guide (g) RNA in type II and subtype V-B CRISPR-Cas systems. The tracrRNA-crRNA interaction is essential for pre-crRNA processing as well as target recognition and cleavage. The tracrRNA consists of an antirepeat, which forms an imperfect hybrid with the repeat in the crRNA, and a distal region containing a Rho-independent terminator. Exhaustive comparative analysis of the sequences and predicted structures of the Class 2 CRISPR guide RNAs shows that all these guide RNAs share distinct structural features, in particular, the nexus stem-loop that separates the repeat-antirepeat hybrid from the distal portion of the tracrRNA and the conserved GU pair at that end of the hybrid. These structural constraints might ensure full exposure of the spacer for target recognition. Reconstruction of tracrRNA evolution for 4 tight bacterial groups demonstrates random drift of repeat-antirepeat complementarity within a window of hybrid stability that is, apparently, maintained by selection. An evolutionary scenario is proposed whereby tracrRNAs evolved on multiple occasions, via rearrangement of a CRISPR array to form the antirepeat in different locations with respect to the array. A functional tracrRNA would form if, in the new location, the antirepeat is flanked by sequences that meet the minimal requirements for a promoter and a Rho-independent terminator. Alternatively, or additionally, the antirepeat sequence could be occasionally ‘reset’ by recombination with a repeat, restoring the functionality of tracrRNAs that drift beyond the required minimal hybrid stability.
机译:反式激活CRISPR(TRACR)RNA是一种不同的RNA物种,其与CRISPR(CR)RNA相互作用,以在II型和亚型V-B CISSPR-CAS系统中形成双引导件(G)RNA。 TRACRRNA-CRRNA相互作用对于预cRRNA处理以及目标识别和切割是必不可少的。 TRACRRNA由反源组成,其在CRRNA中形成不完美的杂交,以及含有无依赖性终止子的远端区域。 2类CISPR指南RNA的序列和预测结构的详尽比较分析表明,所有这些引导RNA共用不同的结构特征,特别是与TRACRRNA的远端部分分离重复 - 反举射杂交物的Nexus茎环杂交的那个末端的保守的古对。这些结构约束可能会确保适用于目标识别的间隔措施。 4个粘性细菌组的TracrRNA演化的重建在杂种稳定性窗口内随机漂移,显然是通过选择而维持的。提出了一种进化场景,其中Tracrrnas通过重新排列CRISPR阵列在多个场合中进化,以在不同位置在阵列中形成反省。如果在新位置,函数的功能性TracrRNA将由符合符合启动子和独立于RON的终止子的最小要求的序列侧翼。或者,或另外地,通过重复的重组,静止反源序列可以偶尔“复位”,恢复TRACRNA的功能,其漂移超过所需的最小混合稳定性。

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  • 来源
    《RNA biology》 |2019年第4期|共14页
  • 作者单位

    National Center for Biotechnology Information National Library of Medicine National Institutes of;

    National Center for Biotechnology Information National Library of Medicine National Institutes of;

    National Center for Biotechnology Information National Library of Medicine National Institutes of;

    National Center for Biotechnology Information National Library of Medicine National Institutes of;

    Department of Food Bioprocessing and Nutrition Sciences North Carolina State University;

    Department of Food Bioprocessing and Nutrition Sciences North Carolina State University;

    National Center for Biotechnology Information National Library of Medicine National Institutes of;

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