Kok Kilic Gizem, Isik Esra, Alpay Omer, Atik Tahir, Aykut Ayca, Durmaz Asude, Cogulu Ozgur, Ozkinay Ferda
Ege University, School of Medicine, Department of Medical Genetics, Turkey.
Ege University, School of Medicine, Department of Pediatrics, Turkey.
Eur J Med Genet. 2022 Nov;65(11):104610. doi: 10.1016/j.ejmg.2022.104610. Epub 2022 Sep 12.
Neurodevelopmental disorders are a heterogeneous group of diseases. Clinical presentation often overlaps with neurodevelopmental disorders, and explaining the molecular origin often requires reverse phenotyping. Next-Generation Sequencing (NGS) allows fast and cost-effective high-throughput sequencing. Given this fact, NGS is a useful tool for reverse phenotyping, especially for rare diseases. We hereby present two similarly affected siblings with neurodevelopmental delay. Duo-whole exome sequencing was performed. The homozygous LSM1 variant was found as the most likely cause for the condition. Our report contributes to the literature on the phenotype the biallelic LSM1 mutations. Moreover, we highlight the importance of reverse phenotyping and reanalysis of the genetic data.
神经发育障碍是一组异质性疾病。临床表现常与神经发育障碍重叠,解释分子起源通常需要反向表型分析。下一代测序(NGS)可实现快速且经济高效的高通量测序。鉴于此,NGS是反向表型分析的有用工具,尤其是对于罕见病。我们在此报告了两名患有神经发育迟缓且症状相似的同胞。进行了双人全外显子组测序。发现纯合的LSM1变异是该病症最可能的病因。我们的报告为关于双等位基因LSM1突变的表型的文献做出了贡献。此外,我们强调了反向表型分析和遗传数据重新分析的重要性。