Identification of a Novel Nonsense Variant in the DLL3 Gene Underlying Spondylocostal Dysostosis in a Consanguineous Pakistani Family.

IF 0.9 4区 医学 Q4 GENETICS & HEREDITY
Molecular Syndromology Pub Date : 2023-06-01 Epub Date: 2023-02-01 DOI:10.1159/000527043
Feroz Khan, Abida Arshad, Asmat Ullah, Ellen Steenackers, Geert Mortier, Wasim Ahmad, Muhammad Arshad, Sarmir Khan, Amir Hayat, Ikram Khan, Muhammad Asim Khan, Wim Van Hul
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引用次数: 0

Abstract

Introduction: Spondylocostal dysostosis (SCD) is characterized by multiple vertebral abnormalities associated with abnormalities of the ribs. Five genes causative for the disease have been identified. These include DLL3 (OMIM *602768), MESP2 (OMIM #608681), LFNG (OMIM #609813), TBX6 (OMIM *602427), and HES7 (OMIM *608059).

Methods: In the current study, we investigated a Pakistani consanguineous family segregating spondylocostal dysotosis. Whole-exome sequencing (WES) followed by Sanger sequencing was performed using DNA of affected and unaffected individuals to identify pathogenic variant(s). The identified variant was interpreted using ACMG classification. Literature review was performed to summarize currently known mutated alleles of DLL3 and the underlying clinical phenotypes.

Results: Clinical examination using anthropometric measurements and radiographs diagnosed the patients to be afflicted with SCD. Pedigree analysis of the affected family showed an autosomal recessive inheritance pattern of the disease. WES followed by Sanger sequencing identified a novel homozygous nonsense variant (DLL3(NM_016941.4): c.535G>T; p.Glu179Ter) in the DLL3 gene located on chromosome 19q13.2.

Conclusion: The study will be helpful in carrier testing and genetic counseling to prevent segregation of the disease to the next generations within this family. It also provides knowledge for clinicians and researchers in search of a better understanding of SCD anomalies.

在巴基斯坦一个近亲家庭中,一个新的无意义的DLL3基因变异导致脊椎脊柱畸形的鉴定。
简介:脊柱侧凸畸形(SCD)的特征是多椎体异常与肋骨异常相关。已经确定了导致这种疾病的五种基因。其中包括DLL3 (OMIM *602768), MESP2 (OMIM #608681), LFNG (OMIM #609813), TBX6 (OMIM *602427)和HES7 (OMIM *608059)。方法:在目前的研究中,我们调查了一个巴基斯坦的近亲家庭分离脊柱侧凸畸形。利用受影响和未受影响个体的DNA进行全外显子组测序(WES)和Sanger测序,以鉴定致病变异。鉴定的变异用ACMG分类进行解释。文献综述总结了目前已知的DLL3突变等位基因及其潜在的临床表型。结果:临床检查结合人体测量和x线片诊断为SCD。家谱分析显示本病为常染色体隐性遗传。WES和Sanger测序鉴定出一种新的纯合无义变异(DLL3(NM_016941.4): c.535G>T;p.g ul179ter)位于染色体19q13.2上的DLL3基因。结论:本研究有助于开展携带者检测和遗传咨询,预防本病在家族内的遗传分离。它还为临床医生和研究人员提供了更好地了解SCD异常的知识。
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来源期刊
Molecular Syndromology
Molecular Syndromology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
1.70
自引率
9.10%
发文量
67
期刊介绍: ''Molecular Syndromology'' publishes high-quality research articles, short reports and reviews on common and rare genetic syndromes, aiming to increase clinical understanding through molecular insights. Topics of particular interest are the molecular basis of genetic syndromes, genotype-phenotype correlation, natural history, strategies in disease management and novel therapeutic approaches based on molecular findings. Research on model systems is also welcome, especially when it is obviously relevant to human genetics. With high-quality reviews on current topics the journal aims to facilitate translation of research findings to a clinical setting while also stimulating further research on clinically relevant questions. The journal targets not only medical geneticists and basic biomedical researchers, but also clinicians dealing with genetic syndromes. With four Associate Editors from three continents and a broad international Editorial Board the journal welcomes submissions covering the latest research from around the world.
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