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The folding of 5′-UTR human G-quadruplexes possessing a long central loop

机译:5'-UTR人G-Quadruplees拥有长中心循环的折叠

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摘要

G-quadruplexes are widespread four-stranded structures that are adopted by G-rich regions of both DNA and RNA and are involved in essential biological processes such as mRNA translation. They are formed by the stacking of two or more G-quartets that are linked together by three loops. Although the maximal loop length is usually fixed to 7 nt in most G-quadruplex-predicting software, it has already been demonstrated that artificial DNA G-quadruplexes containing two distal loops that are limited to 1 nt each and a central loop up to 30 nt long are likely to form in vitro. This report demonstrates that such structures possessing a long central loop are actually found in the 5′-UTRs of human mRNAs. Firstly, 1453 potential G-quadruplex-forming sequences (PG4s) were identified through a bioinformatic survey that searched for sequences respecting the requirement for two 1-nt long distal loops and a long central loop of 2-90 nt in length. Secondly, in vitro in-line probing experiments confirmed and characterized the folding of eight candidates possessing central loops of 10-70 nt long. Finally, the biological effect of several G-quadruplexes with a long central loop on mRNA expression was studied in cellulo using a luciferase gene reporter assay. Clearly, the actual definition of G-quadruplex-forming sequences is too conservative and must be expanded to include the long central loop. This greatly expands the number of expected PG4s in the transcriptome. Consideration of these new candidates might aid in elucidating the potentially important biological implications of the G-quadruplex structure.
机译:G-quadrupleces是广泛的四链结构,其通过DNA和RNA的GR丰富的区域采用,并且参与基本生物方法,例如MRNA翻译。它们由两个或更多个G-四重奏的堆叠形成,所述G-四重奏由三个环连接在一起。尽管最大环长度通常在大多数G-QuadRuplem预测软件中固定为7nt,但已经证明含有两个远端环的人工DNA G-quadruplees,其限制为1nt,每个远端环和高达30nt的中央循环长度可能在体外形成。该报告表明,在人MRNA的5'-UTR中,实际上发现了具有长中心循环的这种结构。首先,通过生物信息调查鉴定1453个潜在的G-四逆转录序列(PG4s),该测量被搜索的序列,该测量搜索了探讨了两个1-NT长远端环的要求和长度为2-90nt的长中心环。其次,在体外在线探测实验证实并表征了具有长度10-70nt的中央环的八个候选物的折叠。最后,使用Luciferase基因报告试验在纤维素中研究了几种具有长中心回路与MRNA表达的几种G-四链用的生物学效应。显然,G-Quadreple-形成序列的实际定义过于保守,并且必须扩展以包括长中心循环。这极大地扩展了转录组中的预期PG4的数量。对这些新候选人的审议可能有助于阐明G-Quadreplex结构的潜在重要的生物学意义。

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  • 来源
    《RNA》 |2014年第7期|共13页
  • 作者单位

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

    Département de Biochimie Faculté de Médecine et des Sciences de la Santé Université de Sherbrooke;

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

    5′-uTR; G-quadruplex; In-line probing; RNA structure; Translation regulation;

    机译:5'-UTR;G-quadruplex;在线探测;RNA结构;翻译规则;

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