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Haplotype-based stratification of Huntington's disease

机译:基于单倍型的亨廷顿疾病分层

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摘要

Huntington's disease (HD) is an autosomal dominant neurodegenerative disease caused by expansion of a CAG trinucleotide repeat in HTT, resulting in an extended polyglutamine tract in huntingtin. We and others have previously determined that the HD-causing expansion occurs on multiple different haplotype backbones, reflecting more than one ancestral origin of the same type of mutation. In view of the therapeutic potential of mutant allele-specific gene silencing, we have compared and integrated two major systems of HTT haplotype definition, combining data from 74 sequence variants to identify the most frequent disease-associated and control chromosome backbones and revealing that there is potential for additional resolution of HD haplotypes. We have used the large collection of 4078 heterozygous HD subjects analyzed in our recent genome-wide association study of HD age at onset to estimate the frequency of these haplotypes in European subjects, finding that common genetic variation at HTT can distinguish the normal and CAG-expanded chromosomes for more than 95% of European HD individuals. As a resource for the HD research community, we have also determined the haplotypes present in a series of publicly available HD subject-derived fibroblasts, induced pluripotent cells, and embryonic stem cells in order to facilitate efforts to develop inclusive methods of allele-specific HTT silencing applicable to most HD patients. Our data providing genetic guidance for therapeutic gene-based targeting will significantly contribute to the developments of rational treatments and implementation of precision medicine in HD.
机译:亨廷顿的疾病(HD)是由HTT中CAG三核苷酸重复的膨胀引起的常染色体显性神经退行性疾病,导致亨廷顿中的延长的聚谷氨酰胺。我们之前,我们先前已经确定了HD导致的扩张发生在多种不同的单倍型骨干上,反映了相同类型突变的多个祖传起源。鉴于突变体等等位基因特异性基因沉默的治疗潜力,我们已经进行了比较和整合了HTT单倍型定义的两个主要系统,将来自74个序列变体的数据组合,以鉴定最常见的疾病相关和控制染色体骨架并揭示存在额外分辨率的HD单倍型分辨率。我们使用了在我们最近的全基因组协会研究中分析的大量4078个杂合子HD受试者,以估计欧洲受试者中这些单倍型的频率,发现HTT的常见遗传变异可以区分正常和CAG-扩展染色体超过95%的欧洲高清个人。作为HD研究群落的资源,我们还确定了一系列公共HD受试者衍生的成纤维细胞,诱导的多能细胞和胚胎干细胞中存在的单倍型,以便于努力开发具有特定等位基因特异性HTT的包容性方法沉默适用于大多数高清患者。我们提供基于治疗基因的靶向遗传指导的数据将大大促进高清中理性治疗的发展和精密药物的实施。

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    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Genea Biocells San Diego CA USA;

    Cardiff Univ Sch Med Dept Psychol Med &

    Neurol Med Res Council Ctr Neuropsychiat Genet &

    Genom;

    Cardiff Univ Sch Med Dept Psychol Med &

    Neurol Med Res Council Ctr Neuropsychiat Genet &

    Genom;

    Cardiff Univ Sch Med Dept Psychol Med &

    Neurol Med Res Council Ctr Neuropsychiat Genet &

    Genom;

    Univ Ulm Dept Neurol Ulm Germany;

    Boston Univ Sch Med Dept Neurol Boston MA 02118 USA;

    CHDI Fdn Princeton NJ USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

    Massachusetts Gen Hosp Ctr Genom Med Mol Neurogenet Unit Boston MA 02114 USA;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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