4.6 Article

Early Developmental Per turbations in a Human Stem Cell Model of MODY5/HNF1B Pancreatic Hypoplasia

期刊

STEM CELL REPORTS
卷 6, 期 3, 页码 357-367

出版社

CELL PRESS
DOI: 10.1016/j.stemcr.2016.01.007

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资金

  1. Joslin DRC iPS Core Facility [NIH 5 P30 DK036836-27]
  2. HSCI/DRC Flow Core [NIH P30DK036836]
  3. Juvenile Diabetes Research Foundation (JDRF) Postdoctoral Fellowship
  4. A*STAR [NHGKTPH SIG/14033]
  5. NUHS-CG Metabolic In-Vitro Core Seed Funding
  6. JCO Career Development Award (CDA) [15302FG148]
  7. HSCI Sternlicht Director's Fund Award [NIH F31DK098931]
  8. Advanced JDRF Postdoctoral Fellowship
  9. Bergen Forskningsstiftelse (BFS)
  10. Western Norway Regional Health Authority
  11. Novo Nordisk Foundation
  12. HSCI
  13. NIH [RO1 DK 67536, RO1 DK 055523, R01103215]
  14. AstraZeneca
  15. Institute of Molecular and Cell Biology (IMCB)
  16. [NIHP50-NS40828]
  17. [NIH-P30-HD18655]
  18. Novo Nordisk Fonden [NNF14OC0010141, NNF15OC0016102] Funding Source: researchfish

向作者/读者索取更多资源

Patients with an HNF1B (S148L/+) mutation (MODY5) typically exhibit pancreatic hypoplasia. However, the molecular mechanisms are unknown due to inaccessibility of patient material and because mouse models do not fully recapitulate MODY5. Here, we differentiated MODY5 human-induced pluripotent stem cells (hiPSCs) into pancreatic progenitors, and show that the HNF1B S148L/+ mutation causes a compensatory increase in several pancreatic transcription factors, and surprisingly, a decrease in PAX6 pancreatic gene expression. The lack of suppression of PDX1, PTF1A, GATA4, and GATA6 indicates that MODY5-mediated pancreatic hypoplasia is mechanistically independent. Overexpression studies demonstrate that a compensatory increase in PDX1 gene expression is due to mutant HNF1B(S148L/+) but not wild-type HNF1B or HNF1A. Furthermore, HNF1B does not appear to directly regulate PAX6 gene expression necessary for glucose tolerance. Our results demonstrate compensatory mechanisms in the pancreatic transcription factor network due to mutant HNF1B(S148L/+) protein. Thus, patients typically develop MODY5 but not neonatal diabetes despite exhibiting pancreatic hypoplasia.

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