综合组学分析阐明了意义不确定的ATRX拷贝数变异。

IF 2.6 3区 生物学 Q2 GENETICS & HEREDITY Journal of Human Genetics Pub Date : 2023-10-31 DOI:10.1038/s10038-023-01203-8
Aren E. Marshall, Yijing Liang, Madeline Couse, Haley McConkey, Care4Rare Canada Consortium, Bekim Sadikovic, Kym M. Boycott, David A. Dyment, Kristin D. Kernohan
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引用次数: 0

摘要

基因的部分重复可能很难检测和解释,因此,可能是人类疾病的一个少报原因。ATRX的X连锁显性变异与α地中海贫血/智力发育受损综合征、X连锁(ATR-X综合征)有关,这是一种临床异质性疾病,通常表现为智力残疾、肌张力减退、特征相、生殖器异常和α地中海贫血。我们描述了一名受影响的男性,其新的半合子基因内重复约43.6 通过非诊断性临床试验后的研究基因组测序检测ATRX中的kb。RNA测序和DNA甲基化附加信号分析是变异解释的核心,这种重复随后被解释为致病。这代表了ATRX中与疾病相关的最小串联重复。该病例证明了整合多种组学技术的诊断实用性,最终可以对罕见病患者进行明确诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Integrated omics analyses clarifies ATRX copy number variant of uncertain significance
Partial duplications of genes can be challenging to detect and interpret and, therefore, likely represent an underreported cause of human disease. X-linked dominant variants in ATRX are associated with Alpha-thalassemia/impaired intellectual development syndrome, X-linked (ATR-X syndrome), a clinically heterogeneous disease generally presenting with intellectual disability, hypotonia, characteristic facies, genital anomalies, and alpha-thalassemia. We describe an affected male with a de novo hemizygous intragenic duplication of ~43.6 kb in ATRX, detected by research genome sequencing following non-diagnostic clinical testing. RNA sequencing and DNA methylation episignature analyses were central in variant interpretation, and this duplication was subsequently interpreted as disease-causing. This represents the smallest reported tandem duplication within ATRX associated with disease. This case demonstrates the diagnostic utility of integrating multiple omics technologies, which can ultimately lead to a definitive diagnosis for rare disease patients.
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来源期刊
Journal of Human Genetics
Journal of Human Genetics 生物-遗传学
CiteScore
7.20
自引率
0.00%
发文量
101
审稿时长
4-8 weeks
期刊介绍: The Journal of Human Genetics is an international journal publishing articles on human genetics, including medical genetics and human genome analysis. It covers all aspects of human genetics, including molecular genetics, clinical genetics, behavioral genetics, immunogenetics, pharmacogenomics, population genetics, functional genomics, epigenetics, genetic counseling and gene therapy. Articles on the following areas are especially welcome: genetic factors of monogenic and complex disorders, genome-wide association studies, genetic epidemiology, cancer genetics, personal genomics, genotype-phenotype relationships and genome diversity.
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