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A fully humanized transgenic mouse model of Huntington disease

机译:亨廷顿疾病全面的人性化转基因小鼠模型

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摘要

Silencing the mutant huntingtin gene (muHTT) is a direct and simple therapeutic strategy for the treatment of Huntington disease (HD) in principle. However, targeting the HD mutation presents challenges because it is an expansion of a common genetic element (a CAG tract) that is found throughout the genome. Moreover, the HTT protein is important for neuronal health throughout life, and silencing strategies that also reduce the wild-type HTT allele may not be well tolerated during the long-term treatment of HD. Several HTT silencing strategies are in development that target genetic sites in HTT that are outside of the CAG expansion, including HD mutation-linked single-nucleotide polymorphisms and the HTT promoter. Preclinical testing of these genetic therapies has required the development of a new mouse model of HD that carries these human-specific genetic targets. To generate a fully humanized mouse model of HD, we have cross-bred BACHD and YAC18 on the Hdh-/- background. The resulting line, Hu97/18, is the first murine model of HD that fully genetically recapitulates human HD having two human HTT genes, no mouse Hdh genes and heterozygosity of the HD mutation. We find that Hu97/18 mice display many of the behavioral changes associated with HD including motor, psychiatric and cognitive deficits, as well as canonical neuropathological abnormalities. This mouse line will be useful for gaining additional insights into the disease mechanisms of HD as well as for testing genetic therapies targeting human HTT. ? The Author 2012. Published by Oxford University Press. All rights reserved.
机译:沉默突变亨廷顿基因(MUHTT)是一种直接和简单的治疗亨廷顿病(HD)的治疗策略原则上。然而,靶向HD突变呈现挑战,因为它是在整个基因组中发现的常见遗传元素(CAG)的膨胀。此外,HTT蛋白在整个寿命期间对于神经元健康是重要的,并且在HD的长期治疗期间,也可以降低野生型HTT等位基因的沉默策略。几种HTT沉默策略正在开发中,靶向CAG膨胀之外的HTT中的遗传位点,包括HD突变链接的单核苷酸多态性和HTT启动子。这些遗传疗法的临床前测试需要开发具有这些人特异性遗传目标的新小鼠模型。要生成完全人性化的高清鼠标模型,我们在HDH - / - 背景上有交叉繁殖的BACHD和YAC18。得到的线Hu97 / 18是HD的第一个HD的鼠模型,其完全遗传地重新承诺具有两个人HTT基因的人HD,没有小鼠HDH基因和HD突变的杂合子。我们发现HU97 / 18小鼠显示与高清相关的许多行为变化,包括电机,精神病和认知缺陷,以及规范神经病理异常。这种鼠标线对于获得HD的疾病机制以及测试靶向人HTT的遗传疗法,将是有用的。还作者2012.牛津大学出版社出版。版权所有。

著录项

  • 来源
    《Human Molecular Genetics 》 |2013年第1期| 共17页
  • 作者单位

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Department of Psychiatry and Behavioral Sciences Stanford University Palo Alto CA 94025 United;

    Behavioral Neuroscience Program Department of Psychology Western Washington University;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Translational Laboratory in Genetic Medicine (TLGM) Department of Medicine National University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Center for Neurobehavioral Genetics Semel Institute for Neuroscience and Human Behavior;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

    Centre for Molecular Medicine and Therapeutics Child and Family Research Institute University of;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
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