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Recent advances in assays for the fragile X-related disorders

机译:脆弱的X相关疾病的测定进展

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摘要

The fragile X-related disorders are a group of three clinical conditions resulting from the instability of a CGG-repeat tract at the 5' end of the FMR1 transcript. Fragile X-associated tremor/ataxia syndrome (FXTAS) and fragile X-associated primary ovarian insufficiency (FXPOI) are disorders seen in carriers of FMR1 alleles with 55-200 repeats. Female carriers of these premutation (PM) alleles are also at risk of having a child who has an FMR1 allele with > 200 repeats. Most of these full mutation (FM) alleles are epigenetically silenced resulting in a deficit of the FMR1 gene product, FMRP. This results in fragile X Syndrome (FXS), the most common heritable cause of intellectual disability and autism. The diagnosis and study of these disorders is challenging, in part because the detection of alleles with large repeat numbers has, until recently, been either time-consuming or unreliable. This problem is compounded by the mosaicism for repeat length and/or DNA methylation that is frequently seen in PM and FM carriers. Furthermore, since AGG interruptions in the repeat tract affect the risk that a FM allele will be maternally transmitted, the ability to accurately detect these interruptions in female PM carriers is an additional challenge that must be met. This review will discuss some of the pros and cons of some recently described assays for these disorders, including those that detect FMRP levels directly, as well as emerging technologies that promise to improve the diagnosis of these conditions and to be useful in both basic and translational research settings.
机译:脆弱的X相关疾病是由FMR1转录物的5'末端的CGG-Repectar的不稳定性产生的一组三种临床病症。脆弱的X相关的震颤/共济失调综合征(FXTAS)和脆弱的X相关原代卵巢功能亢进(FXPOI)是在FMR1等位基因载体中看到的,55-200重复。这些优势的女性载体(PM)等位基因也有患有具有> 200重复的FMR1等位基因的儿童的风险。这些完整突变(FM)等位基因中的大多数是表观学沉默,导致FMR1基因产物FMRP的缺陷。这导致脆弱的X综合征(FXS),最常见的智力残疾和自闭症的遗传学原因。这些疾病的诊断和研究是具有挑战性的,部分原因是在最近的重复数量的等位基因检测到最近,请耗时或不可靠。在PM和FM载体中经常看到的重复长度和/或DNA甲基化的镶嵌物,该问题复合。此外,由于重复道中的AGG中断影响FM等位基因将被划船的风险,因此能够准确地检测在母PM载体中的这些中断的能力是必须满足的额外挑战。本综述将讨论这些疾病最近描述的一些案件的一些优缺点,包括直接检测到FMRP水平的分析,以及新兴技术,并承诺改善这些条件的诊断,并在基本和平移中有用研究设置。

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  • 来源
    《Human Genetics》 |2017年第10期|共15页
  • 作者单位

    NIDDK Sect Gene Struct &

    Dis Lab Cell &

    Mol Biol NIH Bldg 8 Room 2A19 8 Ctr Dr MSC 0830;

    NIDDK Sect Gene Struct &

    Dis Lab Cell &

    Mol Biol NIH Bldg 8 Room 2A19 8 Ctr Dr MSC 0830;

    NIDDK Sect Gene Struct &

    Dis Lab Cell &

    Mol Biol NIH Bldg 8 Room 2A19 8 Ctr Dr MSC 0830;

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

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