Current understanding of skeletal muscle repeat expansion disorders.

IF 4.1 2区 医学 Q1 CLINICAL NEUROLOGY
Manon Boivin, Gianina Ravenscroft
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引用次数: 0

Abstract

Purpose of review: Here, we summarize the current knowledge about the genetics and proposed mechanisms of disease underlying skeletal muscle short tandem repeat (STR) expansion disorders.

Recent findings: The human genome contains up to 2 million STRs (also known as microsatellites), which are highly variable repetitions of two to six nucleotide-long DNA motifs. These elements, present in both coding and noncoding sequences, are highly instable, and their polymorphic variations have important roles in genes regulation and human phenotypic trait diversity. Importantly, expansion over a threshold size of a subset of these STR is the cause of approximately 60 neurological diseases, including some major muscle disorders such as myotonic dystrophy, oculopharyngodistal myopathy (OPDM) and oculopharyngeal muscular dystrophy. The discovery and characterisation of a number of these STR expansion disorders, in particular for OPDM, has been enabled in recent years by advanced genomic technologies.

Summary: Many recently described STR expansion disorders are now recognized and genetic testing of patients is possible on a research basis, clinical testing for these newly described repeat loci is not yet readily available and is complicated by the reduced penetrance seen in some families, rendering clinical interpretation more difficult. The phenotypic spectrums associated with these STR expansion disorders are also evolving as unbiased sequencing approaches identified expansions at known loci in individuals with phenotypes that are quite different to those in which the STR expansions were first characterized. The pathomechanisms associated with these newer STR expansion disorders is still poorly understood, however there is evidence of both RNA toxicity and polyGly toxicity. Additional STR expansions underlying skeletal muscle diseases are likely to be identified in coming years and may shed further light onto the complex genetics, epigenetics and disease mechanisms underlying these disorders.

目前对骨骼肌重复扩张障碍的认识。
综述的目的:在这里,我们总结了目前关于骨骼肌短串联重复序列(STR)扩张障碍的遗传学和潜在疾病机制的知识。最近的发现:人类基因组包含多达200万个str(也称为微卫星),它们是2到6个核苷酸长的DNA基元的高度可变重复。这些元件存在于编码序列和非编码序列中,具有高度的不稳定性,其多态性变异在基因调控和人类表型性状多样性中具有重要作用。重要的是,这些STR的一个子集超过阈值大小的扩张是大约60种神经系统疾病的原因,包括一些主要的肌肉疾病,如肌强直性营养不良、眼咽远端肌病(OPDM)和眼咽肌营养不良。近年来,先进的基因组技术使许多STR扩展疾病,特别是OPDM的发现和特征得以实现。摘要:许多最近描述的STR扩展疾病现在已经被认识到,并且在研究基础上对患者进行基因检测是可能的,但这些新描述的重复位点的临床检测还不容易获得,并且由于在一些家庭中看到的外显率降低而变得复杂,使得临床解释更加困难。与这些STR扩增疾病相关的表型谱也在不断发展,因为无偏倚测序方法在具有表型的个体中发现了已知位点的扩增,这些扩增与最初表征STR扩增的个体有很大不同。与这些新的STR扩展疾病相关的病理机制仍然知之甚少,但有证据表明RNA毒性和多聚毒性。未来几年可能会发现骨骼肌疾病背后的其他STR扩增,并可能进一步阐明这些疾病背后的复杂遗传学、表观遗传学和疾病机制。
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来源期刊
Current Opinion in Neurology
Current Opinion in Neurology 医学-临床神经学
CiteScore
8.60
自引率
0.00%
发文量
174
审稿时长
6-12 weeks
期刊介绍: ​​​​​​​​Current Opinion in Neurology is a highly regarded journal offering insightful editorials and on-the-mark invited reviews; covering key subjects such as cerebrovascular disease, developmental disorders, neuroimaging and demyelinating diseases. Published bimonthly, each issue of Current Opinion in Neurology introduces world renowned guest editors and internationally recognized academics within the neurology field, delivering a widespread selection of expert assessments on the latest developments from the most recent literature.
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