Hirschsprung-like disease is exacerbated by reduced de novo GMP synthesis

Insights

Mycophenolate, a drug inhibiting nucleotide synthesis, impairs enteric nervous system development, causing Hirschsprung-like pathology in mice. This finding suggests some Hirschsprung disease cases may be preventable by avoiding such medications.

Area of Science:

  • Developmental biology
  • Neuroscience
  • Pharmacology

Background:

  • Hirschsprung disease (HSCR) is a birth defect caused by failed enteric nervous system (ENS) colonization of the bowel.
  • Genetic factors explain some HSCR variability, but nongenetic influences are suspected.

Purpose of the Study:

  • To investigate the role of nongenetic factors in ENS development and HSCR.
  • To identify drugs that disrupt ENS formation.

Main Methods:

  • Drug screening in zebrafish identified mycophenolate as an ENS disruptor.
  • Mycophenolate treatment in mice and cultured cells assessed effects on ENS precursor proliferation, migration, and survival.
  • Mouse models of HSCR were used to evaluate mycophenolate's impact on disease penetrance and severity.

Main Results:

  • Mycophenolate impaired ENS precursor proliferation, delayed migration, and caused aganglionosis in mice.
  • In HSCR mouse models, mycophenolate exacerbated pathology.
  • Mycophenolate reduced ENS precursor migration, proliferation, and survival in vitro.
  • Reduced proliferation, not migration, was identified as the primary cause of mycophenolate-induced defects.

Conclusions:

  • De novo guanine nucleotide biosynthesis is critical for ENS development.
  • Mycophenolate is the first identified drug causing major ENS malformations and Hirschsprung-like pathology in mammals.
  • Some Hirschsprung disease cases may be preventable by avoiding specific medications during pregnancy.

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