脊髓性肌萎缩症的新生缺失:携带者检测和遗传咨询的意义。

IF 3.1 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Maria M Zwartkruis, Mirjam S de Pagter, Demi Gommers, Marije Koopmans, Cecile P E Ottenheim, Joris V Kortooms, Mirjan Albring, Martin G Elferink, Renske I Wadman, Fay-Lynn Asselman, Inge Cuppen, W Ludo van der Pol, Marcel R Nelen, Gijs W van Haaften, Ewout J N Groen
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引用次数: 0

摘要

脊髓性肌萎缩症(SMA)是一种常染色体隐性遗传病,最常见的原因是SMN1基因的纯合缺失。受影响儿童的父母通常是携带者,未来怀孕的复发风险为25%。他们的近亲有高达50%的机会成为携带者。携带者通常拥有SMN1基因的一个拷贝;然而,一些父母携带两个SMN1拷贝。目前的标准诊断携带者测试无法区分一条染色体上有两个拷贝的沉默携带者(2 + 0基因型)和发生从头缺失的非携带者(1 + 1基因型)。这种区别对于复发风险评估至关重要,这突出了携带者检测和遗传咨询尚未解决的挑战。我们结合微卫星标记分析、SMN拷贝数分析、Sanger测序、长读序列测序和从头组装来研究通过新生儿筛查发现的SMA患者家系中SMN1缺失的原因,该患者的父母各携带两个SMN1拷贝。我们的分析显示父亲是一个沉默的携带者,而SMN位点的从头组装显示母亲和孩子之间有1.4兆碱基(Mb)的从头缺失。这种缺失包括SMN1和SMN2,是迄今为止首次报道的核苷酸水平上解决的sma导致的缺失。我们的研究结果为高危亲属提供了知情咨询,并说明了SMA携带者检测和咨询的复杂性。该病例强调了在特定病例中对SMA携带者进行先进基因检测的可行性和必要性,以改进遗传咨询实践、风险评估和计划生育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A de novo deletion underlying spinal muscular atrophy: implications for carrier testing and genetic counseling.

Spinal muscular atrophy (SMA) is an autosomal recessive disease most commonly caused by homozygous deletion of the SMN1 gene. Parents of affected children are typically carriers, with a recurrence risk of 25% for future pregnancies. Their close relatives have up to 50% chance of being carriers. Carriers typically possess a single copy of the SMN1 gene; however, some parents carry two copies of SMN1. Current standard diagnostic carrier tests are unable to distinguish between silent carriers with two copies on one chromosome (2 + 0 genotype) and non-carriers (1 + 1 genotype), where a de novo deletion occurred. This distinction is crucial for recurrence risk assessment, which highlights the unsolved challenge to carrier testing and genetic counseling. We combined microsatellite marker analysis, SMN copy number analysis, Sanger sequencing, long-read sequencing and de novo assembly to investigate the cause of the absence of SMN1 in a pedigree with an SMA patient identified through newborn screening, whose parents each carried two SMN1 copies. Our analysis revealed that the father is a silent carrier, while de novo assembly of the SMN locus showed a 1.4 megabase (Mb) de novo deletion between mother and child. This deletion encompasses SMN1 and SMN2 and represents the first reported nucleotide-level resolved SMA-causing deletion to date. Our findings allowed informed counseling of at-risk relatives and illustrate the complexity of SMA carrier testing and counseling. This case underscores the feasibility of and need for advanced genetic testing for SMA carriership in select cases, to improve genetic counseling practices, risk assessment, and family planning.

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来源期刊
Human molecular genetics
Human molecular genetics 生物-生化与分子生物学
CiteScore
6.90
自引率
2.90%
发文量
294
审稿时长
2-4 weeks
期刊介绍: Human Molecular Genetics concentrates on full-length research papers covering a wide range of topics in all aspects of human molecular genetics. These include: the molecular basis of human genetic disease developmental genetics cancer genetics neurogenetics chromosome and genome structure and function therapy of genetic disease stem cells in human genetic disease and therapy, including the application of iPS cells genome-wide association studies mouse and other models of human diseases functional genomics computational genomics In addition, the journal also publishes research on other model systems for the analysis of genes, especially when there is an obvious relevance to human genetics.
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