Publication:
A complementary study approach unravels novel players in the pathoetiology of Hirschsprung disease.

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Date

2020-11-05

Authors

Mederer, Tanja
Schmitteckert, Stefanie
Volz, Julia
Martinez, Cristina
Röth, Ralph
Thumberger, Thomas
Eckstein, Volker
Scheuerer, Jutta
Thöni, Cornelia
Lasitschka, Felix

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Public Library of Science
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Abstract

Hirschsprung disease (HSCR, OMIM 142623) involves congenital intestinal obstruction caused by dysfunction of neural crest cells and their progeny during enteric nervous system (ENS) development. HSCR is a multifactorial disorder; pathogenetic variants accounting for disease phenotype are identified only in a minority of cases, and the identification of novel disease-relevant genes remains challenging. In order to identify and to validate a potential disease-causing relevance of novel HSCR candidate genes, we established a complementary study approach, combining whole exome sequencing (WES) with transcriptome analysis of murine embryonic ENS-related tissues, literature and database searches, in silico network analyses, and functional readouts using candidate gene-specific genome-edited cell clones. WES datasets of two patients with HSCR and their non-affected parents were analysed, and four novel HSCR candidate genes could be identified: ATP7A, SREBF1, ABCD1 and PIAS2. Further rare variants in these genes were identified in additional HSCR patients, suggesting disease relevance. Transcriptomics revealed that these genes are expressed in embryonic and fetal gastrointestinal tissues. Knockout of these genes in neuronal cells demonstrated impaired cell differentiation, proliferation and/or survival. Our approach identified and validated candidate HSCR genes and provided further insight into the underlying pathomechanisms of HSCR.

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MeSH Terms

ATP Binding Cassette Transporter, Subfamily D, Member 1
Animals
Cell Proliferation
Cell Survival
Copper-Transporting ATPases
Gene Knockout Techniques
Humans
Male
Protein Inhibitors of Activated STAT
Sterol Regulatory Element Binding Protein 1

DeCS Terms

Genes
Secuenciación del Exoma
Enfermedad de Hirschsprung
Sobrevida
Cresta neural
Obstrucción intestinal
Células clonales
Diferenciación celular
Fenotipo
Genoma

CIE Terms

Keywords

Cell Differentiation, Cell Line, Computer Simulation, Disease Models, Animal, Gene Expression Profiling, Hirschsprung Disease, Infant, Mice, Exome Sequencing

Citation

Mederer T, Schmitteckert S, Volz J, Martínez C, Röth R, Thumberger T, et al. A complementary study approach unravels novel players in the pathoetiology of Hirschsprung disease. PLoS Genet. 2020 Nov 5;16(11):e1009106.