GATA4 Mutations Are a Cause of Neonatal and Childhood-Onset Diabetes
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Published version
Author(s)
Type
Journal Article
Abstract
The GATA family zinc finger transcription factors GATA4 and GATA6 are known to play important roles in the development of the pancreas. In mice, both Gata4 and Gata6 are required for pancreatic development. In humans, GATA6 haploinsufficiency can cause pancreatic agenesis and heart defects. Congenital heart defects also are common in patients with GATA4 mutations and deletions, but the role of GATA4 in the developing human pancreas is unproven. We report five patients with deletions (n = 4) or mutations of the GATA4 gene who have diabetes and a variable exocrine phenotype. In four cases, diabetes presented in the neonatal period (age at diagnosis 1–7 days). A de novo GATA4 missense mutation (p.N273K) was identified in a patient with complete absence of the pancreas confirmed at postmortem. This mutation affects a highly conserved residue located in the second zinc finger domain of the GATA4 protein. In vitro studies showed reduced DNA binding and transactivational activity of the mutant protein. We show that GATA4 mutations/deletions are a cause of neonatal or childhood-onset diabetes with or without exocrine insufficiency. These results confirm a role for GATA4 in normal development of the human pancreas.
Date Issued
2014-08-01
Date Acceptance
2014-03-27
Citation
Diabetes, 2014, 63 (8), pp.2888-2894
ISSN
0012-1797
Publisher
AMER DIABETES ASSOC
Start Page
2888
End Page
2894
Journal / Book Title
Diabetes
Volume
63
Issue
8
Copyright Statement
© 2014 by the American Diabetes Association. Readers may use this article as
long as the work is properly cited, the use is educational and not for profit, and
the work is not altered.
long as the work is properly cited, the use is educational and not for profit, and
the work is not altered.
Subjects
Science & Technology
Life Sciences & Biomedicine
Endocrinology & Metabolism
ENDOCRINOLOGY & METABOLISM
CONGENITAL HEART-DEFECTS
TRANSCRIPTION FACTOR
PANCREATIC AGENESIS
VENTRAL MORPHOGENESIS
CHROMOSOME 8P23.1
TUBE FORMATION
MOUSE GATA4
GENE
SPECTRUM
ENHANCER
Publication Status
Published