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首页> 外文期刊>Current topics in medicinal chemistry >The Interaction of DNA-Binding Ligands with Trinucleotide-Repeat DNA: Implications for Therapy and Diagnosis of Neurological Disorders
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The Interaction of DNA-Binding Ligands with Trinucleotide-Repeat DNA: Implications for Therapy and Diagnosis of Neurological Disorders

机译:DNA结合配体与三核苷酸重复DNA的相互作用:对神经系统疾病的治疗和诊断的意义。

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Expansion of trinucleotide repeats (TNRs) within genes plays a major role in pathology of various neurological diseases. The correlations of these unusual repetitive sequences with the aetiology of these diseases and the mechanism by which those repeats are expanded during replication have been extensively studied. Small-molecule ligands that bind to TNRs could provide potent biological applications. First, the length of the TNR is the most important determinant of these neurological diseases. Ligands that reduce the repeat length or impair repeat expansion may be used to delay onset and reduce the severity of these diseases. Interestingly, many important anticancer ligands and antibiotics have desirable qualities when interacting with TNR DNA, and may form the basis for the development of novel therapeutics against neurological diseases. Second, designed ligands that bind to expanded TNRs with high specificity based on the structural and chemical characteristics of these repeats can serve as diagnostic tools for determining repeat length and may have applications in preventive medicine. In this article we will review our current understanding of the interaction between DNA-binding ligands and TNRs.
机译:基因内三核苷酸重复序列(TNR)的扩增在各种神经疾病的病理学中起着重要作用。这些异常的重复序列与这些疾病的病因以及复制过程中这些重复序列扩展的机制之间的相关性已得到广泛研究。与TNR结合的小分子配体可以提供强大的生物学应用。首先,TNR的长度是这些神经系统疾病的最重要决定因素。减少重复长度或削弱重复扩增的配体可用于延迟发作并降低这些疾病的严重性。有趣的是,许多重要的抗癌配体和抗生素在与TNR DNA相互作用时具有理想的品质,并可能构成开发针对神经疾病的新型疗法的基础。其次,基于这些重复序列的结构和化学特性,设计的与扩展的TNRs高特异性结合的配体可以用作确定重复序列长度的诊断工具,并可以在预防医学中应用。在本文中,我们将回顾我们对DNA结合配体与TNR之间相互作用的当前理解。

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