Possibilities and challenges of small molecule organic compounds for the treatment of repeat diseases.

IF 4.4 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the Japan Academy. Series B, Physical and Biological Sciences Pub Date : 2022-01-01 DOI:10.2183/pjab.98.003
Kazuhiko Nakatani
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引用次数: 4

Abstract

The instability of repeat sequences in the human genome results in the onset of many neurological diseases if the repeats expand above a certain threshold. The transcripts containing long repeats sequester RNA binding proteins. The mechanism of repeat instability involves metastable slip-out hairpin DNA structures. Synthetic organic chemists have focused on the development of small organic molecules targeting repeat DNA and RNA sequences to treat neurological diseases with repeat-binding molecules. Our laboratory has studied a series of small molecules binding to mismatched base pairs and found molecules capable of binding CAG repeat DNA, which causes Huntington's disease upon expansion, CUG repeat RNA, a typical toxic RNA causing myotonic dystrophy type 1, and UGGAA repeat RNA causing spinocerebellar ataxia type 31. These molecules exhibited significant beneficial effects on disease models in vivo, suggesting the possibilities for small molecules as drugs for treating these neurological diseases.

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小分子有机化合物治疗重复性疾病的可能性和挑战。
人类基因组中重复序列的不稳定性导致许多神经系统疾病的发病,如果重复序列扩展到一定阈值以上。含有长重复序列的转录本隔离RNA结合蛋白。重复不稳定性的机制涉及亚稳态滑出发夹DNA结构。合成有机化学家一直致力于开发靶向重复DNA和RNA序列的有机小分子,利用重复结合分子治疗神经系统疾病。我们实验室对一系列结合错配碱基对的小分子进行了研究,发现了能够结合导致亨廷顿氏病的CAG重复DNA、导致1型肌强直营养不良的典型毒性RNA CUG重复RNA和导致31型脊髓小脑性共济失调的UGGAA重复RNA的分子。这些分子在体内疾病模型中表现出显著的有益作用,提示小分子作为治疗这些神经系统疾病的药物的可能性。
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来源期刊
CiteScore
6.60
自引率
0.00%
发文量
26
审稿时长
>12 weeks
期刊介绍: The Proceedings of the Japan Academy Ser. B (PJA-B) is a scientific publication of the Japan Academy with a 90-year history, and covers all branches of natural sciences, except for mathematics, which is covered by the PJA-A. It is published ten times a year and is distributed widely throughout the world and can be read and obtained free of charge through the world wide web.
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