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Oligonucleotide-based strategies to combat polyglutamine diseases

机译:基于寡核苷酸的对抗聚谷氨酰胺疾病的策略

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摘要

Considerable advances have been recently made in understanding the molecular aspects of pathogenesis and in developing therapeutic approaches for polyglutamine (polyQ) diseases. Studies on pathogenic mechanisms have extended our knowledge of mutant protein toxicity, confirmed the toxicity of mutant transcript and identified other toxic RNA and protein entities. One very promising therapeutic strategy is targeting the causative gene expression with oligonucleotide (ON) based tools. This straightforward approach aimed at halting the early steps in the cascade of pathogenic events has been widely tested for Huntington's disease and spinocerebellar ataxia type 3. In this review, we gather information on the use of antisense oligonucleotides and RNA interference triggers for the experimental treatment of polyQ diseases in cellular and animal models. We present studies testing non-allele-selective and allele-selective gene silencing strategies. The latter include targeting SNP variants associated with mutations or targeting the pathologically expanded CAG repeat directly. We compare gene silencing effectors of various types in a number of aspects, including their design, efficiency in cell culture experiments and pre-clinical testing. We discuss advantages, current limitations and perspectives of various ON-based strategies used to treat polyQ diseases
机译:最近在理解发病机制的分子方面以及制定聚谷氨酰胺(PolyQ)疾病的治疗方法的情况下进行了相当大的进展。对致病机制的研究延长了我们对突变蛋白质毒性的认识,证实了突变转录物的毒性,并确定了其他有毒RNA和蛋白质实体。一个非常有前途的治疗策略是靶向基于寡核苷酸(ON)的工具的致病基因表达。这种直接的方法旨在停止脑卒中事件级联的早期步骤已被亨廷顿的疾病和纺丝大脑共济失调型广泛测试3.在本综述中,我们收集关于使用反义寡核苷酸和RNA干扰触发的信息,用于实验治疗蜂窝和动物模型中的PolyQ疾病。我们展示了测试非等位基因选择性和等位基因选择性基因沉默策略的研究。后者包括靶向与突变相关的SNP变体,或直接靶向病理膨胀的CAG重复。我们在许多方面进行比较各种类型的基因沉默效应,包括它们的设计,细胞培养实验效率和临床前测试。我们讨论了用于治疗PolyQ疾病的各种基于基于基于基于基于策略的优势,当前限制和视角

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  • 来源
    《Nucleic Acids Research》 |2014年第11期|共24页
  • 作者单位

    Department of Molecular Biomedicine Institute of Bioorganic Chemistry Polish Academy of Sciences Noskowskiego 12/14 61-704 Poznan Poland;

    Department of Molecular Biomedicine Institute of Bioorganic Chemistry Polish Academy of Sciences Noskowskiego 12/14 61-704 Poznan Poland;

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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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