4.4 Article

Arx is required for normal enteroendocrine cell development in mice and humans

Journal

DEVELOPMENTAL BIOLOGY
Volume 365, Issue 1, Pages 175-188

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ydbio.2012.02.024

Keywords

Arx; Transcription factor; Glucagon; Somatostatin; Gastrin; CCK; Secretin; Serotonin; Enteroendocrine cells; Endocrine progenitors; Specification; Differentiation

Funding

  1. [NIH-DK078606]
  2. [NIH-DK019525]
  3. [JDRF2-2007-730]
  4. [NIH-GM072915]
  5. [NIH-DK080823]
  6. [NIH-HD046387]
  7. [NIH-T32-DK007066]

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Enteroendocrine cells of the gastrointestinal (GI) tract play a central role in metabolism, digestion, satiety and lipid absorption, yet their development remains poorly understood. Here we show that Arx, a homeodomain-containing transcription factor, is required for the normal development of mouse and human enteroendocrine cells. Arx expression is detected in a subset of Neurogenin3 (Ngn3)-positive endocrine progenitors and is also found in a subset of hormone-producing cells. In mice, removal of Arx from the developing endoderm results in a decrease of enteroendocrine cell types including gastrin-, glucagon/GLP-1-, CCK-, secretin-producing cell populations and an increase of somatostatin-expressing cells. This phenotype is also observed in mice with endocrine-progenitor-specific Arx ablation suggesting that Arx is required in the progenitor for enteroendocrine cell development. In addition, depletion of human ARX in developing human intestinal tissue results in a profound deficit in expression of the enteroendocrine cell markers CCK, secretin and glucagon while expression of a pan-intestinal epithelial marker. CDX2, and other non-endocrine markers remained unchanged. Taken together, our findings uncover a novel and conserved role of Arx in mammalian endocrine cell development and provide a potential cause for the chronic diarrhea seen in both humans and mice carrying Arx mutations. (C) 2012 Elsevier Inc. All rights reserved.

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