BACKGROUND:Insulin is a critical component of metabolic control, and as such, insulin gene expression has been the focus of extensive study. DNA sequences that regulate transcription of the insulin gene and the majority of regulatory factors have already been identified. However, only recently have other components of insulin gene expression been investigated, and in this study we examine the role of DNA methylation in the regulation of mouse and human insulin gene expression. METHODOLOGY/PRINCIPAL FINDINGS:Genomic DNA samples from several tissues were bisulfite-treated and sequenced which revealed that cytosine-guanosine dinucleotide (CpG) sites in both the mouse Ins2 and human INS promoters are uniquely demethylated in insulin-producing p...
<p>(A) Genomic DNA samples from mouse muscle, liver, kidney, blood, brain, spleen, whole pancreas, p...
<p>Mouse embryonic stem cells from Ngn3-EGFP mice were induced to differentiate through several stag...
DNA methylation is a mechanism by which cells control gene expression, and cell-specific genes often...
Background: Insulin is a critical component of metabolic control, and as such, insulin gene expressi...
Insulin is a critical component of metabolic control, and as such, insulin gene expression has been ...
Aims/hypothesis: Although recent studies propose that epigenetic factors influence insulin expressio...
AIMS/HYPOTHESIS: Although recent studies propose that epigenetic factors influence insulin expressio...
<p>(A) A diagram of the three luciferase reporter plasmids used to test the effect of methylation on...
Recent studies have implicated epigenetics in the pathophysiology of diabetes. Further-more, DNA met...
Although recent studies propose that epigenetic factors influence insulin expression, the regulation...
<div><p>Recent studies have implicated epigenetics in the pathophysiology of diabetes. Furthermore, ...
Human insulinomas are rare, benign, slowly proliferating, insulin-producing beta cell tumors that pr...
Recent studies have implicated epigenetics in the pathophysiology of diabetes. Furthermore, DNA meth...
DNA methylation at promoters is an important determinant of gene expression. Earlier studies suggest...
<div><p>DNA methylation is a mechanism by which cells control gene expression, and cell-specific gen...
<p>(A) Genomic DNA samples from mouse muscle, liver, kidney, blood, brain, spleen, whole pancreas, p...
<p>Mouse embryonic stem cells from Ngn3-EGFP mice were induced to differentiate through several stag...
DNA methylation is a mechanism by which cells control gene expression, and cell-specific genes often...
Background: Insulin is a critical component of metabolic control, and as such, insulin gene expressi...
Insulin is a critical component of metabolic control, and as such, insulin gene expression has been ...
Aims/hypothesis: Although recent studies propose that epigenetic factors influence insulin expressio...
AIMS/HYPOTHESIS: Although recent studies propose that epigenetic factors influence insulin expressio...
<p>(A) A diagram of the three luciferase reporter plasmids used to test the effect of methylation on...
Recent studies have implicated epigenetics in the pathophysiology of diabetes. Further-more, DNA met...
Although recent studies propose that epigenetic factors influence insulin expression, the regulation...
<div><p>Recent studies have implicated epigenetics in the pathophysiology of diabetes. Furthermore, ...
Human insulinomas are rare, benign, slowly proliferating, insulin-producing beta cell tumors that pr...
Recent studies have implicated epigenetics in the pathophysiology of diabetes. Furthermore, DNA meth...
DNA methylation at promoters is an important determinant of gene expression. Earlier studies suggest...
<div><p>DNA methylation is a mechanism by which cells control gene expression, and cell-specific gen...
<p>(A) Genomic DNA samples from mouse muscle, liver, kidney, blood, brain, spleen, whole pancreas, p...
<p>Mouse embryonic stem cells from Ngn3-EGFP mice were induced to differentiate through several stag...
DNA methylation is a mechanism by which cells control gene expression, and cell-specific genes often...