Related Experiment Video
Updated: Sep 3, 2025

Navigating MARRVEL, a Web-Based Tool that Integrates Human Genomics and Model Organism Genetics Information
Published on: August 15, 2019
TFAP2B Haploinsufficiency Impacts Gastrointestinal Function and Leads to Pediatric Intestinal Pseudo-obstruction
Almira Zada1, Laura E Kuil1, Bianca M de Graaf1
1Department of Clinical Genetics, Erasmus Medical Centre-Sophia Children's Hospital, Rotterdam, Netherlands.
Insights
Genetic analysis identified TFAP2B haploinsufficiency as a cause of Pediatric Intestinal Pseudo-obstruction (PIPO). This leads to reduced enteric neurons and gastrointestinal dysmotility in affected children.
Area of Science:
- Genetics
- Developmental Biology
- Gastroenterology
Background:
- Pediatric Intestinal Pseudo-obstruction (PIPO) is a rare congenital disorder causing severe gastrointestinal dysmotility without mechanical blockage.
- Genetic underpinnings of PIPO remain largely unknown, with many patients lacking a definitive diagnosis.
Purpose of the Study:
- To identify the genetic cause of PIPO in a patient presenting with severe neonatal intestinal dysmotility.
- To functionally characterize the identified genetic variant and its role in PIPO pathogenesis.
Main Methods:
- Whole exome sequencing (WES) in a patient and unaffected parents.
- In vitro functional assays using HEK293 cells to assess RNA splicing and protein expression.
- In vivo studies using a zebrafish model with CRISPR/Cas9-mediated gene disruption.
Main Results:
- A de novo heterozygous deletion in TFAP2B was identified, affecting RNA splicing and leading to a premature stop codon and loss of TFAP2B protein.
- Zebrafish models with disrupted tfap2b exhibited reduced enteric neuron numbers and delayed gastrointestinal transit time.
- Downstream effects included decreased ednrbb mRNA levels in tfap2b-disrupted zebrafish.
Conclusions:
- TFAP2B haploinsufficiency is implicated in PIPO pathogenesis.
- Reduced TFAP2B function leads to decreased enteric neuronal populations and gastrointestinal dysmotility.
- This study establishes TFAP2B as a novel gene associated with Pediatric Intestinal Pseudo-obstruction.
Abstract:
Background: Pediatric Intestinal Pseudo-obstruction (PIPO) is a congenital enteric disorder characterized by severe gastrointestinal (GI) dysmotility, without mechanical obstruction. Although several genes have been described to cause this disease, most patients do not receive a genetic diagnosis. Here, we aim to identify the genetic cause of PIPO in a patient diagnosed with severe intestinal dysmotility shortly after birth. Methods: Whole exome sequencing (WES) was performed in the patient and unaffected parents, in a diagnostic setting. After identification of the potential disease-causing variant, its functional consequences were determined in vitro and in vivo. For this, expression constructs with and without the causing variant, were overexpressed in HEK293 cells. To investigate the role of the candidate gene in GI development and function, a zebrafish model was generated where its expression was disrupted using CRISPR/Cas9 editing. Results: WES analysis identified a de novo heterozygous deletion in TFAP2B (NM_003221.4:c.602-5_606delTCTAGTTCCA), classified as a variant of unknown significance. In vitro studies showed that this deletion affects RNA splicing and results in loss of exon 4, leading to the appearance of a premature stop codon and absence of TFAP2B protein. Disruption of tfap2b in zebrafish led to decreased enteric neuronal numbers and delayed transit time. However, no defects in neuronal differentiation were detected. tfap2b crispants also showed decreased levels of ednrbb mRNA, a downstream target of tfap2b. Conclusion: We showed that TFAP2B haploinsufficiency leads to reduced neuronal numbers and GI dysmotility, suggesting for the first time, that this gene is involved in PIPO pathogenesis.
Related Concept Videos
Glucose Transporters
Facilitated diffusion-glucose transporters (GLUTs) are encoded by the solute-linked carrier (SLC) family 2, subfamily A gene family, or SLC2A. The 14 GLUT protein members are distributed into three classes:
Inborn Errors of Metabolism
Cystic Fibrosis: Pathogenesis
CF is primarily caused by a genetic mutation in a chromosome 7 gene coding for the cystic fibrosis transmembrane conductance regulator (CFTR) protein. The most common gene mutation leading to CF is the ΔF508 mutation,...
Pleiotropy
Gastrointestinal Motility Disorders
Appendicitis-I: Introduction
Etiology: Appendicitis can arise from various causes, primarily rooted in the obstruction of the appendix lumen. Factors contributing to this obstruction include fecal accumulation, lymphoid hyperplasia and, in...

