Genetic and allelic heterogeneity in 248 Indians with skeletal dysplasia

IF 4.6 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY European Journal of Human Genetics Pub Date : 2024-12-20 DOI:10.1038/s41431-024-01776-8
Prince Jacob, Swati Singh, Gandham SriLakshmi Bhavani, Kalpana Gowrishankar, Dhanya Lakshmi Narayanan, Sheela Nampoothiri, S. J. Patil, J. P. Soni, Mamta Muranjan, Seema Kapoor, Bhavna Dhingra, Ballambattu Vishnu Bhat, Shruti Bajaj, Amrita Banerjee, Mahabaleshwar Mamadapur, Sankar V. Hariharan, Nutan Kamath, Rathika D. Shenoy, Deepti Suri, Anju Shukla, Ashwin Dalal, Shubha R. Phadke, Gen Nishimura, Geert Mortier, Hitesh Shah, Katta M. Girisha
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Abstract

Skeletal dysplasias are a clinically and genetically heterogeneous group of rare disorders. Studies from large cohorts are essential to provide insights into the disease epidemiology, phenotypic spectrum, and mutational profiles. Here we enumerate additional 248 Indians from 197 families with a skeletal dysplasia, following a similar study earlier. We achieved a clinical-molecular diagnosis in 145 families by targeted analysis in 37 and next generation sequencing (exomes and genomes) in 108 families that resulted in a diagnostic yield of 73.6% (145 of 197 families). We identified 149 causal variants, of which 85 were novel, across 73 genes. Eighty-one distinct monogenic forms of skeletal dysplasia were observed with a high proportion of autosomal recessive skeletal dysplasias (60%, 84 families). We observed consanguinity in 35% of the families. Lysosomal storage diseases with skeletal involvement, FGFR3-related skeletal dysplasia and disorders of bone mineralisation were most frequent in this cohort. We expand the phenotypic and genotypic spectrum of rarely reported conditions (RAB33B, TRIP11, NEPRO, RPL13, COL27A1, PTHR1, EXOC6B, PRKACA, FUZ and RSPRY1) and noted novel gene-disease relationships for PISD, BNIP1, TONSL, CCN2 and SCUBE3 related skeletal dysplasia. We successfully implemented genomic testing for skeletal dysplasia in clinical and research settings. Our study provides valuable information on the spectrum of skeletal dysplasia and disease-causing variants for Asian Indians.

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248名印度人骨骼发育不良的遗传和等位基因异质性。
骨骼发育不良是一种临床和遗传异质性的罕见疾病。来自大型队列的研究对于深入了解疾病流行病学、表型谱和突变谱至关重要。在此,我们列举了来自197个家庭的额外248名患有骨骼发育不良的印度人,此前进行了类似的研究。我们通过对108个家庭的37个和下一代测序(外显子组和基因组)进行靶向分析,对145个家庭进行了临床分子诊断,结果诊出率为73.6%(197个家庭中的145个)。我们在73个基因中发现了149个因果变异,其中85个是新的。81种不同的单基因骨骼发育不良形式被观察到,其中常染色体隐性骨骼发育不良的比例很高(60%,84个家族)。我们观察到35%的家庭有血缘关系。伴有骨骼受累的溶酶体贮积病、fgfr3相关的骨骼发育不良和骨矿化障碍在该队列中最为常见。我们扩大了很少报道的疾病(RAB33B、TRIP11、NEPRO、RPL13、COL27A1、PTHR1、EXOC6B、PRKACA、FUZ和RSPRY1)的表型和基因型谱,并注意到PISD、BNIP1、TONSL、CCN2和SCUBE3相关骨骼发育不良的新基因-疾病关系。我们成功地在临床和研究环境中实施了骨骼发育不良的基因组检测。我们的研究为亚洲印第安人的骨骼发育不良和致病变异谱提供了有价值的信息。
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来源期刊
European Journal of Human Genetics
European Journal of Human Genetics 生物-生化与分子生物学
CiteScore
9.90
自引率
5.80%
发文量
216
审稿时长
2 months
期刊介绍: The European Journal of Human Genetics is the official journal of the European Society of Human Genetics, publishing high-quality, original research papers, short reports and reviews in the rapidly expanding field of human genetics and genomics. It covers molecular, clinical and cytogenetics, interfacing between advanced biomedical research and the clinician, and bridging the great diversity of facilities, resources and viewpoints in the genetics community. Key areas include: -Monogenic and multifactorial disorders -Development and malformation -Hereditary cancer -Medical Genomics -Gene mapping and functional studies -Genotype-phenotype correlations -Genetic variation and genome diversity -Statistical and computational genetics -Bioinformatics -Advances in diagnostics -Therapy and prevention -Animal models -Genetic services -Community genetics
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