Back to Search Start Over

Human exome and mouse embryonic expression data implicate ZFHX3, TRPS1, and CHD7 in human esophageal atresia

Authors :
Jeshurun C Kalanithy
Heiko Reutter
Oliver Münsterer
Katharina Kleine
Oliver Johannes Deffaa
Andreas Heydweiller
Beno Ure
Andreas Leutner
Alina C. Hilger
Stefanie Heilmann-Heimbach
Rong Zhang
Maria-Theodora Melissari
Nicole Spychalski
Ralf Kurz
Barbara Ludwikowski
Markus Pauly
Jörg Fuchs
Amit Kawalia
Jochen Hubertus
Eberhard Schmiedeke
Holger Thiele
Korbinian M. Riedhammer
Stefanie Märzheuser
Ferdinand Kosch
Jan Gehlen
Alice Hölscher
Ekkehart Jenetzky
Amit Sharma
Johannes Leonhardt
Julia Fabian
Michael Ludwig
Athira M. Menon
Guido Seitz
Barbara Gomez
Tikam Chand Dakal
Mattias Schäfer
Julia Höfele
Jan-Hendrik Gosemann
Johannes Schumacher
Lea Waffenschmidt
Nadine Zwink
Jörg Neser
Thomas M. Boemers
Phillip Grote
Martin Lacher
Petra Degenhardt
Stefan Holland-Cunz
Katinka Breuer
Pastor Santos-Cortez, Regie Lyn
Source :
PLoS ONE, Vol 15, Iss 6, p e0234246 (2020), PLoS ONE
Publication Year :
2020

Abstract

Introduction Esophageal atresia with or without tracheoesophageal fistula (EA/TEF) occurs approximately 1 in 3.500 live births representing the most common malformation of the upper digestive tract. Only half a century ago, EA/TEF was fatal among affected newborns suggesting that the steady birth prevalence might in parts be due to mutational de novo events in genes involved in foregut development. Methods To identify mutational de novo events in EA/TEF patients, we surveyed the exome of 30 case-parent trios. Identified and confirmed de novo variants were prioritized using in silico prediction tools. To investigate the embryonic role of genes harboring prioritized de novo variants we performed targeted analysis of mouse transcriptome data of esophageal tissue obtained at the embryonic day (E) E8.5, E12.5, and postnatal. Results In total we prioritized 14 novel de novo variants in 14 different genes (APOL2, EEF1D, CHD7, FANCB, GGT6, KIAA0556, NFX1, NPR2, PIGC, SLC5A2, TANC2, TRPS1, UBA3, and ZFHX3) and eight rare de novo variants in eight additional genes (CELSR1, CLP1, GPR133, HPS3, MTA3, PLEC, STAB1, and PPIP5K2). Through personal communication during the project, we identified an additional EA/TEF case-parent trio with a rare de novo variant in ZFHX3. In silico prediction analysis of the identified variants and comparative analysis of mouse transcriptome data of esophageal tissue obtained at E8.5, E12.5, and postnatal prioritized CHD7, TRPS1, and ZFHX3 as EA/TEF candidate genes. Re-sequencing of ZFHX3 in additional 192 EA/TEF patients did not identify further putative EA/TEF-associated variants. Conclusion Our study suggests that rare mutational de novo events in genes involved in foregut development contribute to the development of EA/TEF.

Details

Language :
English
Database :
OpenAIRE
Journal :
PLoS ONE, Vol 15, Iss 6, p e0234246 (2020), PLoS ONE
Accession number :
edsair.doi.dedup.....ee5c98f50d324dc8019d0c8ba287fc98