Pancreatic Agenesis due to Compound Heterozygosity for a Novel Enhancer and Truncating Mutation in the PTF1A Gene
Author(s) -
Mônica Andrade Lima Gabbay,
Sian Ellard,
Elisa De Franco,
Regina S. Moisés
Publication year - 2017
Publication title -
journal of clinical research in pediatric endocrinology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.566
H-Index - 35
eISSN - 1308-5735
pISSN - 1308-5727
DOI - 10.4274/jcrpe.4494
Subject(s) - frameshift mutation , exon , mutation , enhancer , agenesis , loss of heterozygosity , genetics , compound heterozygosity , haploinsufficiency , sanger sequencing , gene , medicine , biology , allele , phenotype , transcription factor
Neonatal diabetes, defined as the onset of diabetes within the first six months of life, is very rarely caused by pancreatic agenesis. Homozygous truncating mutations in the PTF1A gene, which encodes a transcriptional factor, have been reported in patients with pancreatic and cerebellar agenesis, whilst mutations located in a distal pancreatic-specific enhancer cause isolated pancreatic agenesis. We report an infant, born to healthy non-consanguineous parents, with neonatal diabetes due to pancreatic agenesis. Initial genetic investigation included sequencing of KCNJ11, ABCC8 and INS genes, but no mutations were found. Following this, 22 neonatal diabetes associated genes were analyzed by a next generation sequencing assay. We found compound heterozygous mutations in the PTF1A gene: A frameshift mutation in exon 1 (c.437_462 del, p.Ala146Glyfs*116) and a mutation affecting a highly conserved nucleotide within the distal pancreatic enhancer (g.23508442A>G). Both mutations were confirmed by Sanger sequencing. Isolated pancreatic agenesis resulting from compound heterozygosity for truncating and enhancer mutations in the PTF1A gene has not been previously reported. This report broadens the spectrum of mutations causing pancreatic agenesis.
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