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Systematic analysis of variants escaping nonsense-mediated decay uncovers candidate Mendelian diseases

遗传学 孟德尔遗传 生物 外显子组测序 基因 表型 候选基因 等位基因 突变 无义突变 错义突变
作者
Rebecca Torene,María J. Guillen Sacoto,Francisca Millan,Zhancheng Zhang,Stephen McGee,Matthew T. Oetjens,Elizabeth Heise,Karen Chong,Richard Sidlow,Lauren O’Grady,Inderneel Sahai,Christa Lese Martin,David H. Ledbetter,Scott M. Myers,Kevin J. Mitchell,Kyle Retterer
出处
期刊:American Journal of Human Genetics [Elsevier BV]
卷期号:111 (1): 70-81 被引量:2
标识
DOI:10.1016/j.ajhg.2023.11.007
摘要

Protein-truncating variants (PTVs) near the 3′ end of genes may escape nonsense-mediated decay (NMD). PTVs in the NMD-escape region (PTVescs) can cause Mendelian disease but are difficult to interpret given their varying impact on protein function. Previously, PTVesc burden was assessed in an epilepsy cohort, but no large-scale analysis has systematically evaluated these variants in rare disease. We performed a retrospective analysis of 29,031 neurodevelopmental disorder (NDD) parent-offspring trios referred for clinical exome sequencing to identify PTVesc de novo mutations (DNMs). We identified 1,376 PTVesc DNMs and 133 genes that were significantly enriched (binomial p < 0.001). The PTVesc-enriched genes included those with PTVescs previously described to cause dominant Mendelian disease (e.g., SEMA6B, PPM1D, and DAGLA). We annotated ClinVar variants for PTVescs and identified 948 genes with at least one high-confidence pathogenic variant. Twenty-two known Mendelian PTVesc-enriched genes had no prior evidence of PTVesc-associated disease. We found 22 additional PTVesc-enriched genes that are not well established to be associated with Mendelian disease, several of which showed phenotypic similarity between individuals harboring PTVesc variants in the same gene. Four individuals with PTVesc mutations in RAB1A had similar phenotypes including NDD and spasticity. PTVesc mutations in IRF2BP1 were found in two individuals who each had severe immunodeficiency manifesting in NDD. Three individuals with PTVesc mutations in LDB1 all had NDD and multiple congenital anomalies. Using a large-scale, systematic analysis of DNMs, we extend the mutation spectrum for known Mendelian disease-associated genes and identify potentially novel disease-associated genes.
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