학술논문

Nonsense mutation in the novel PERCC1 gene as a genetic cause of congenital diarrhea and enteropathy
Document Type
Academic Journal
Source
Human Genetics. May, 2023, Vol. 142 Issue 5, p691, 6 p.
Subject
Gene mutations -- Genetic aspects
Nucleotide sequencing -- Genetic aspects
Genetic disorders -- Genetic aspects
Medical research
Medicine, Experimental
Dehydration (Physiology) -- Genetic aspects
Genes -- Genetic aspects
DNA sequencing -- Genetic aspects
Diarrhea -- Genetic aspects
Ethylenediaminetetraacetic acid
Medical colleges
Language
English
ISSN
0340-6717
Abstract
Congenital diarrheas and enteropathies (CODEs) constitute a heterogeneous group of individually rare disorders manifesting with infantile-onset chronic diarrhea. Genomic deletions in chromosome 16, encompassing a sequence termed the 'intestine-critical region (ICR)', were recently identified as the cause of an autosomal recessive congenital enteropathy. The regulatory sequence within the ICR is flanked by an unannotated open reading frame termed PERCC1, which plays a role in enteroendocrine cell (EEC) function. We investigated two unrelated children with idiopathic congenital diarrhea requiring home parenteral nutrition attending the Irish Intestinal Failure Program. Currently 12 and 19-years old, these Irish male patients presented with watery diarrhea and hypernatremic dehydration in infancy. Probands were phenotyped by comprehensive clinical investigations, including endoscopic biopsies and serum gastrin level measurements. Following negative exome sequencing, PCR and Sanger sequencing of the entire coding region and intron boundaries of PERCC1 were performed for each proband and their parents. In both patients, serum gastrin levels were low and failed to increase following a meal challenge. While no deletions involving the ICR were detected, targeted sequencing of the PERCC1 gene revealed a shared homozygous c.390C > G stop gain variant. We report clinical and molecular findings in two unrelated patients harboring a shared homozygous variant in PERCC1, comprising the first description of a point mutation in this gene in association with CODE. That both parenteral nutrition dependent children with unexplained diarrhea at our institution harbored a PERCC1 mutation underscores the importance of its inclusion in exome sequencing interpretation.
Author(s): Dina Marek-Yagel [sup.1] [sup.2] [sup.3], Emily Stenke [sup.4], Ben Pode-Shakked [sup.1] [sup.3] [sup.5], Cara Dunne [sup.4] [sup.6], Ellen Crushell [sup.7], Anthea Bryce-Smith [sup.4], Michael McDermott [sup.8], Maureen J. O'Sullivan [...]