Pancreatic β cells adapt to compensate for increased metabolic demand during insulin resistance. Although the microRNA pathway has an essential role in β cell proliferation, the extent of its contribution is unclear. Here, we report that miR-184 is silenced in the pancreatic islets of insulin-resistant mouse models and type 2 diabetic human subjects. Reduction of miR-184 promotes the expression of its target Argonaute2 (Ago2), a component of the microRNA-induced silencing complex. Moreover, restoration of miR-184 in leptin-deficient ob/ob mice decreased Ago2 and prevented compensatory β cell expansion. Loss of Ago2 during insulin resistance blocked β cell growth and relieved the regulation of miR-375-targeted genes, including the growth sup...
Altered growth and development of the endocrine pancreas is a frequent cause of the hyperglycemia as...
The loss of functional beta-cell mass in type 2 diabetes (T2D) is associated with molecular events t...
Impaired insulin secretion from the pancreatic β-cells is central in the pathogenesis of type 2 diab...
SummaryPancreatic β cells adapt to compensate for increased metabolic demand during insulin resistan...
Pancreatic β cells adapt to compensate for increased metabolic demand during insulin resistance. Alt...
Pancreatic β cells adapt to compensate for increased metabolic demand during insulin resistance. Alt...
Pancreatic {beta} cells adapt to compensate for increased metabolic demand during insulin resistance...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted insulin...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted insulin...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted in...
AMPK is a critical energy sensor and target for widely used antidiabetic drugs. In β-cells, elevated...
The elucidation of the mechanisms directing β-cell mass regeneration and maintenance is of interest,...
In summary, two critical aspects of the β-cell biology have been addressed in this thesis. We have s...
Argonaute2 (Ago2) is an established component of the microRNA-induced silencing complex. Similar to ...
Altered growth and development of the endocrine pancreas is a frequent cause of the hyperglycemia as...
Altered growth and development of the endocrine pancreas is a frequent cause of the hyperglycemia as...
The loss of functional beta-cell mass in type 2 diabetes (T2D) is associated with molecular events t...
Impaired insulin secretion from the pancreatic β-cells is central in the pathogenesis of type 2 diab...
SummaryPancreatic β cells adapt to compensate for increased metabolic demand during insulin resistan...
Pancreatic β cells adapt to compensate for increased metabolic demand during insulin resistance. Alt...
Pancreatic β cells adapt to compensate for increased metabolic demand during insulin resistance. Alt...
Pancreatic {beta} cells adapt to compensate for increased metabolic demand during insulin resistance...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted insulin...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted insulin...
In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted in...
AMPK is a critical energy sensor and target for widely used antidiabetic drugs. In β-cells, elevated...
The elucidation of the mechanisms directing β-cell mass regeneration and maintenance is of interest,...
In summary, two critical aspects of the β-cell biology have been addressed in this thesis. We have s...
Argonaute2 (Ago2) is an established component of the microRNA-induced silencing complex. Similar to ...
Altered growth and development of the endocrine pancreas is a frequent cause of the hyperglycemia as...
Altered growth and development of the endocrine pancreas is a frequent cause of the hyperglycemia as...
The loss of functional beta-cell mass in type 2 diabetes (T2D) is associated with molecular events t...
Impaired insulin secretion from the pancreatic β-cells is central in the pathogenesis of type 2 diab...