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首页> 外文期刊>Biochemistry >Design of a “Mini” Nucleic Acid Probe for Cooperative Binding of an RNA-Repeated Transcript Associated with Myotonic Dystrophy Type 1
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Design of a “Mini” Nucleic Acid Probe for Cooperative Binding of an RNA-Repeated Transcript Associated with Myotonic Dystrophy Type 1

机译:与肌动肌营养不良型相关的RNA重复转录物合作结合的“迷你”核酸探针的设计

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摘要

Toxic RNAs containing expanded trinucleotide repeats are the cause of many neuromuscular disorders, one being myotonic dystrophy type 1 (DM1). DM1 is triggered by CTG-repeat expansion in the 3′-untranslated region of the DMPK gene, resulting in a toxic gain of RNA function through sequestration of MBNL1 protein, among others. Herein, we report the development of a relatively short miniPEG-γ peptide nucleic acid probe, two triplet repeats in length, containing terminal pyrene moieties, that is capable of binding rCUG repeats in a sequence-specific and selective manner. The newly designed probe can discriminate the pathogenic rCUG~(exp) from the wild-type transcript and disrupt the rCUG~(exp)–MBNL1 complex. The work provides a proof of concept for the development of relatively short nucleic acid probes for targeting RNA-repeat expansions associated with DM1 and other related neuromuscular disorders.
机译:含有膨胀三核苷酸的有毒RNA是许多神经肌肉障碍的原因,一种是肌肌营养不良型1(DM1)。 通过CTG重复膨胀在DMPK基因的3'-未翻译区域中的CTG重复膨胀触发,导致RNA函数的有毒增益通过MBNL1蛋白的螯合,等等。 在此,我们报告了相对短的Minipeg-γ肽核酸探针的研制,两个三重态重复,含有末端芘部分,其能够以序列特异性和选择性方式结合RCug重量。 新设计的探针可以区分野生型转录物的致病性RCug〜(exp),并破坏RCug〜(exp)-MBNL1复合物。 该工作提供了用于靶向与DM1和其他相关神经肌病相关的RNA重复膨胀的相对短的核酸探针的概念证据。

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  • 来源
    《Biochemistry》 |2018年第6期|共5页
  • 作者单位

    Department of Chemistry Institute for Biomolecular Design and Discovery (IBD) and CNAST Carnegie Mellon University 4400 Fifth Avenue Pittsburgh Pennsylvania 15213 United States;

    Department of Chemistry Institute for Biomolecular Design and Discovery (IBD) and CNAST Carnegie Mellon University 4400 Fifth Avenue Pittsburgh Pennsylvania 15213 United States;

    Department of Chemistry Institute for Biomolecular Design and Discovery (IBD) and CNAST Carnegie Mellon University 4400 Fifth Avenue Pittsburgh Pennsylvania 15213 United States;

    Department of Neurology Box 645 University of Rochester Medical Center 601 Elmwood Avenue Rochester New York 14642 United States;

    Department of Neurology Box 645 University of Rochester Medical Center 601 Elmwood Avenue Rochester New York 14642 United States;

    Department of Neurology Box 645 University of Rochester Medical Center 601 Elmwood Avenue Rochester New York 14642 United States;

    Department of Chemistry Institute for Biomolecular Design and Discovery (IBD) and CNAST Carnegie Mellon University 4400 Fifth Avenue Pittsburgh Pennsylvania 15213 United States;

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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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