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A Pipeline to Assess Disease-Associated Haplotypes in Repeat Expansion Disorders: The Example of MJD/SCA3 Locus

机译:评估重复扩展疾病中与疾病相关的单倍型的管道:MJD / SCA3基因座的示例

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摘要

At least 40 human diseases are associated with repeat expansions; yet, the mutational origin and instability mechanisms remain unknown for most of them. Previously, genetic epidemiology and predisposing backgrounds for the instability of some expanding loci have been studied in different populations through the analysis of diversity flanking the respective pathogenic repeats. Here, we aimed at developing a pipeline to assess disease-associated haplotypes at oligonucleotide repeat loci, combining analysis of single nucleotide polymorphisms (SNPs) and short tandem repeats (STRs). Machado-Joseph disease (MJD/SCA3), the most frequent dominant ataxia worldwide, was used as an example of a detailed procedure. Thus, to identify genetic backgrounds that segregate with expanded/mutated alleles in MJD, we selected a set of 26 SNPs and 7 STRs flanking the causative CAG repeat. Key criteria and steps for this selection are described, and included (1) haplotype blocks minimizing the occurrence of recombination (for SNPs); and (2) match scores to increase potential for polymorphic information content of repetitive sequences found in Tandem Repeats Finder (for STRs). To directly assess SNP haplotypes in phase with MJD expansions, we optimized a strategy with preferential amplification of normal over expanded alleles, in addition to SNP allele-specific amplifications; this allowed the identification of disease-associated SNP haplotypes, even when only the proband is available in a given family. To infer STR haplotypes, we optimized a multiplex PCR, including 7 STRs plus the MJD_CAG repeat, followed by analysis of segregation or the use of the PHASE software. This protocol is a ready-to-use tool to assess MJD haplotypes in different populations. The pipeline designed can be used to assess disease-associated haplotypes in other repeat-expansion diseases. This should be of great utility to study (1) genetic epidemiology (population-of-origin, age and spreading routes of mutations) and (2) mechanisms responsible for de novo expansions, in these neurological diseases; (3) to detect predisposing haplotypes and (4) phenotype modifiers; (5) to help solving cases of apparent homoallelism (two same-size normal alleles) in diagnosis; and (6) to identify the best targets for the development of allele-specific therapies in ethnically diverse patient populations.
机译:至少40种人类疾病与重复发作有关;然而,对于大多数突变起源和不稳定机制仍然未知。以前,已经通过对各个致病重复序列侧翼的多样性进行了分析,在不同的人群中研究了遗传流行病学和一些扩展基因座不稳定的诱因背景。在这里,我们旨在开发一条管道,以评估寡核苷酸重复基因座上与疾病相关的单倍型,结合对单核苷酸多态性(SNP)和短串联重复序列(STR)的分析。 Machado-Joseph病(MJD / SCA3)是全世界最常见的显性共济失调,被用作详细手术的一个例子。因此,为了鉴定与扩展/突变的等位基因在MJD中分离的遗传背景,我们选择了由26个SNP和7个STR构成的CAG重复序列侧翼。描述了选择的关键标准和步骤,其中包括(1)最小化重组发生的单倍型模块(对于SNP); (2)匹配分数,以增加在串联重复序列查找器(对于STR)中发现的重复序列的多态信息内容的可能性。为了直接评估与MJD扩展同相的SNP单倍型,我们优化了一种策略,除了SNP等位基因特异性扩增外,还优先扩增正常​​等位基因而不是扩展等位基因。即使在给定的家庭中只有先证者,也可以鉴定与疾病相关的SNP单倍型。为了推断STR单倍型,我们优化了多重PCR,包括7个STR加MJD_CAG重复序列,然后进行分离分析或使用PHASE软件。该协议是一种随时可用的工具,可以评估不同人群中的MJD单倍型。设计的管道可用于评估其他重复扩展疾病中与疾病相关的单倍型。这对于研究(1)遗传流行病学(起源人群,年龄和突变的传播途径)和(2)导致这些神经系统疾病从头扩展的机制应具有很大的实用性; (3)检测易感的单倍型和(4)表型修饰子; (5)帮助解决明显的等位基因病例(两个相同大小的正常等位基因)以进行诊断; (6)确定在不同种族的患者群体中开发等位基因特异性疗法的最佳靶点。

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