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.

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