丙酸血症
错义突变
生物
遗传学
等位基因
基因
基因型
先天性代谢错误
表型
新生儿筛查
复合杂合度
生物信息学
生物化学
作者
Ainhoa Martínez‐Pizarro,Nadège Calmels,Audrey Schalk,Camille Wicker,Eva Richard,Lourdes R. Desviat
出处
期刊:Gene
[Elsevier]
日期:2023-10-13
卷期号:893: 147902-147902
标识
DOI:10.1016/j.gene.2023.147902
摘要
Next-generation sequencing has improved the diagnosis of inborn errors of metabolism, allowing rapid confirmation of cases detected by clinical/biochemical studies or newborn screening. The challenge, however, remains for establishing the pathogenicity of the identified variants, especially for novel missense changes or small in-frame deletions. In this work we report a propionic acidemia patient exhibiting a severe neonatal form with coma and hyperammonaemia. Genetic analysis identified the previously described pathogenic PCCB variant p.R512C in the maternal allele and two novel PCCB variants in cis in the paternal allele, p.G246del and p.S322F. Expression analysis in a eukaryotic system confirmed the deleterious effect of the novel missense variant and of the one amino acid deletion, as they both exhibited reduced protein levels and reduced or null PCC activity compared to the wild-type construct. Accordingly, the double mutant resulted in no residual activity. This study increases the knowledge of the genotype-phenotype correlations in the rare disease propionic acidemia and highlights the necessity of functional analysis of novel variants to understand their contribution to disease severity and to accurately classify their pathogenic status. In conclusion, two novel PCCB pathogenic variants have been identified, expanding the current mutational spectrum of propionic acidemia.
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