Homozygous truncating mutations in the helix-loop-helix transcription factor PTF1A are a rare cause of pancreatic and cerebellar agenesis. The correlation of Ptf1a dosage with pancreatic phenotype in a mouse model suggested the possibility of finding hypomorphic PTF1A mutations in patients with pancreatic agenesis or neonatal diabetes but no cerebellar phenotype. Genome-wide single nucleotide polymorphism typing in two siblings with neonatal diabetes from a consanguineous pedigree revealed a large shared homozygous region (31 Mb) spanning PTF1A Sanger sequencing of PTF1A identified a novel missense mutation, p.P191T. Testing of 259 additional patients using a targeted next-generation sequencing assay for 23 neonatal diabetes genes detected ...
Patients with pancreatic agenesis are born without a pancreas, causing permanent neonatal diabetes a...
Mutations in several genes cause nonautoimmune diabetes, but numerous patients still have unclear ge...
Neonatal diabetes is a rare form of diabetes, characterized by onset in the first 6 months of life. ...
Homozygous truncating mutations in the helix-loop-helix transcription factor PTF1A are a rare cause ...
This is the author accepted manuscript. The final version is available from the American Diabetes As...
Individuals with permanent neonatal diabetes mellitus usually present within the first three months ...
Individuals with permanent neonatal diabetes mellitus usually present within the first three months ...
Sequence variants in cis-acting enhancers are important for polygenic disease, but their role in Men...
Abstract Context Biallelic mutations in the PTF1A enhancer ...
Understanding transcriptional regulation of pancreatic development is required to advance current ef...
Neonatal diabetes mellitus is a rare form of monogenic diabetes which is diagnosed in the first six ...
The contribution of cis-regulatory mutations to human disease remains poorly understood. Whole-genom...
Neonatal diabetes mellitus can be transient or permanent. The severe form of permanent neonatal diab...
SummaryUnderstanding transcriptional regulation of pancreatic development is required to advance cur...
Neonatal diabetes mellitus can be transient or permanent. The severe form of permanent neonatal diab...
Patients with pancreatic agenesis are born without a pancreas, causing permanent neonatal diabetes a...
Mutations in several genes cause nonautoimmune diabetes, but numerous patients still have unclear ge...
Neonatal diabetes is a rare form of diabetes, characterized by onset in the first 6 months of life. ...
Homozygous truncating mutations in the helix-loop-helix transcription factor PTF1A are a rare cause ...
This is the author accepted manuscript. The final version is available from the American Diabetes As...
Individuals with permanent neonatal diabetes mellitus usually present within the first three months ...
Individuals with permanent neonatal diabetes mellitus usually present within the first three months ...
Sequence variants in cis-acting enhancers are important for polygenic disease, but their role in Men...
Abstract Context Biallelic mutations in the PTF1A enhancer ...
Understanding transcriptional regulation of pancreatic development is required to advance current ef...
Neonatal diabetes mellitus is a rare form of monogenic diabetes which is diagnosed in the first six ...
The contribution of cis-regulatory mutations to human disease remains poorly understood. Whole-genom...
Neonatal diabetes mellitus can be transient or permanent. The severe form of permanent neonatal diab...
SummaryUnderstanding transcriptional regulation of pancreatic development is required to advance cur...
Neonatal diabetes mellitus can be transient or permanent. The severe form of permanent neonatal diab...
Patients with pancreatic agenesis are born without a pancreas, causing permanent neonatal diabetes a...
Mutations in several genes cause nonautoimmune diabetes, but numerous patients still have unclear ge...
Neonatal diabetes is a rare form of diabetes, characterized by onset in the first 6 months of life. ...