现象
生命银行
斑马鱼
孟德尔遗传
疾病
生物
人类遗传学
联机孟德尔在人类中的遗传
外显子组测序
外显子组
表型
遗传学
计算生物学
基因
医学
生物信息学
病理
作者
Gökhan Ünlü,Xinzi Qi,Eric R. Gamazon,David B. Melville,Nisha Patel,Amy R. Rushing,Mais Hashem,Abdullah Alfaifi,Rui Chen,Bingshan Li,Nancy J. Cox,Ela W. Knapik
出处
期刊:Nature Medicine
[Springer Nature]
日期:2020-01-01
卷期号:26 (1): 98-109
被引量:33
标识
DOI:10.1038/s41591-019-0705-y
摘要
Discovery of genotype-phenotype relationships remains a major challenge in clinical medicine. Here, we combined three sources of phenotypic data to uncover a new mechanism for rare and common diseases resulting from collagen secretion deficits. Using a zebrafish genetic screen, we identified the ric1 gene as being essential for skeletal biology. Using a gene-based phenome-wide association study (PheWAS) in the EHR-linked BioVU biobank, we show that reduced genetically determined expression of RIC1 is associated with musculoskeletal and dental conditions. Whole-exome sequencing identified individuals homozygous-by-descent for a rare variant in RIC1 and, through a guided clinical re-evaluation, it was discovered that they share signs with the BioVU-associated phenome. We named this new Mendelian syndrome CATIFA (cleft lip, cataract, tooth abnormality, intellectual disability, facial dysmorphism, attention-deficit hyperactivity disorder) and revealed further disease mechanisms. This gene-based, PheWAS-guided approach can accelerate the discovery of clinically relevant disease phenome and associated biological mechanisms.
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