The transcription of individual genes is determined by combinatorial interactions between DNA–binding transcription factors. The current challenge is to understand how such combinatorial interactions regulate broad genetic programs that underlie cellular functions and disease. The transcription factors Hnf1α and Hnf4α control pancreatic islet β-cell function and growth, and mutations in their genes cause closely related forms of diabetes. We have now exploited genetic epistasis to examine how Hnf1α and Hnf4α functionally interact in pancreatic islets. Expression profiling in islets from either Hnf1a+/− or pancreas-specific Hnf4a mutant mice showed that the two transcription factors regulate a strikingly similar set of genes. We integrated e...
<div><p>Unique nuclear receptor Hepatocyte Nuclear Factor 4α (HNF4α) is an essential transcriptional...
Unique nuclear receptor Hepatocyte Nuclear Factor 4a (HNF4a) is an essential transcriptional regulat...
Hepatocyte nuclear factor 4alpha (HNF4alpha) is a tissue-specific transcription factor expressed in ...
Diabetes mellitus is a metabolic disorder that currently affects over 180 million people worldwide. ...
Objective: Genetic and acquired abnormalities contribute to pancreatic β-cell failure in diabetes. T...
Heterozygous HNF1A mutations cause pancreatic-islet beta-cell dysfunction and monogenic diabetes (MO...
Type 2 diabetes affects over 300 million people, causing severe complications and premature death, y...
OBJECTIVE The evolutionary conservation of transcriptional mechanisms has been widely exploited to u...
Pancreatic islet beta cell differentiation and function are dependent upon a group of transcription ...
The field of pancreas development has markedly expanded over the last decade, significantly advancin...
[eng] Diabetes mellitus is a heterogeneous group of metabolic diseases characterized by impaired blo...
The liver and pancreas share a common origin and coexpress several transcription factors. To gain in...
Islets of Langerhans contain multiple hormone-producing endocrine cells controlling glucose homeosta...
Type 2 diabetes affects over 300 million people, causing severe complications and premature death, y...
Heterozygous mutations in the genes encoding tran-scriptional regulators hepatocyte nuclear factor (...
<div><p>Unique nuclear receptor Hepatocyte Nuclear Factor 4α (HNF4α) is an essential transcriptional...
Unique nuclear receptor Hepatocyte Nuclear Factor 4a (HNF4a) is an essential transcriptional regulat...
Hepatocyte nuclear factor 4alpha (HNF4alpha) is a tissue-specific transcription factor expressed in ...
Diabetes mellitus is a metabolic disorder that currently affects over 180 million people worldwide. ...
Objective: Genetic and acquired abnormalities contribute to pancreatic β-cell failure in diabetes. T...
Heterozygous HNF1A mutations cause pancreatic-islet beta-cell dysfunction and monogenic diabetes (MO...
Type 2 diabetes affects over 300 million people, causing severe complications and premature death, y...
OBJECTIVE The evolutionary conservation of transcriptional mechanisms has been widely exploited to u...
Pancreatic islet beta cell differentiation and function are dependent upon a group of transcription ...
The field of pancreas development has markedly expanded over the last decade, significantly advancin...
[eng] Diabetes mellitus is a heterogeneous group of metabolic diseases characterized by impaired blo...
The liver and pancreas share a common origin and coexpress several transcription factors. To gain in...
Islets of Langerhans contain multiple hormone-producing endocrine cells controlling glucose homeosta...
Type 2 diabetes affects over 300 million people, causing severe complications and premature death, y...
Heterozygous mutations in the genes encoding tran-scriptional regulators hepatocyte nuclear factor (...
<div><p>Unique nuclear receptor Hepatocyte Nuclear Factor 4α (HNF4α) is an essential transcriptional...
Unique nuclear receptor Hepatocyte Nuclear Factor 4a (HNF4a) is an essential transcriptional regulat...
Hepatocyte nuclear factor 4alpha (HNF4alpha) is a tissue-specific transcription factor expressed in ...