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首页> 外文期刊>ACS Chemical Biology >Discovery of Oligonucleotide Signaling Mediated by CRISPR-Associated Polymerases Solves Two Puzzles but Leaves an Enigma
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Discovery of Oligonucleotide Signaling Mediated by CRISPR-Associated Polymerases Solves Two Puzzles but Leaves an Enigma

机译:发现由CRISP相关聚合酶介导的寡核苷酸信号传导求解两个难题,但留下了谜

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摘要

The signature component of type III CRISPR-Cas systems is the Cas10 protein that consists of two Palm domains homologous to those of DNA and RNA polymerases and nucleotide cyclases and an HD nuclease domain. However, until very recently, the activity of the Palm domains and their role in CRISPR function have not been experimentally established. Most of the type III CRISPR-Cas systems and some type I systems also encompass proteins containing the CARF (CRISPR-associated Rossmann fold) domain that has been predicted to regulate CRISPR functions via nucleotide binding, but its function in CRISPR-Cas remained obscure. Two independent recent studies show that the Palm domain of Cas10 catalyzes synthesis of oligoadenylates, which bind the CARF domain of the Csm6 protein and activate its RNase domain that cleaves foreign transcripts enabling interference by type III CRISPR-Cas. In one coup, these findings resolved two long-standing puzzles of CRISPR biology and reveal a new regulatory pathway that governs the CRISPR response. However, the full extent of this pathway, and especially the driving forces behind the evolution of this complex mechanism of CRISPR-Cas activation, remains to be uncovered.
机译:III型CRISPR-CAS系统的签名组分是CAS10蛋白,其由两种与DNA和RNA聚合酶和核苷酸环酶和HD核酸酶的群体域和HD核酸酶域。然而,直到最近,掌上域的活动及其在CRISPR职能中的作用尚未确定。 III型Typ III型CRAP-Systems和一些I型系统还包括含有CARF(CRISPR相关的Rossmann折叠)结构域的蛋白质,该域已经预测通过核苷酸结合调节CRISPR功能,但其在CRISPR-CAS中的功能仍然模糊不清。两个独立的最近研究表明,CAS10的棕榈域催化寡核苷酸的合成,其结合CSM6蛋白的CARF结构域并激活其RNA族结构域,其切割III型CRISPR-CAS的外来转录物能够干扰。在一个政变中,这些调查结果解决了两种严苛的生物学谜题,并揭示了一个治理Crispr回应的新监管途径。然而,这种途径的全部程度,特别是CRISPR-CAS激活的这种复杂机制的演变背后的驱动力仍未被揭露。

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  • 来源
    《ACS Chemical Biology》 |2018年第2期|共4页
  • 作者单位

    National Center for Biotechnology Information National Library of Medicine Bethesda Maryland 20894 United States;

    National Center for Biotechnology Information National Library of Medicine Bethesda Maryland 20894 United States;

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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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