AbstractThe role of cytosolic free Ca2+ in insulin release was evaluated using isolated rat pancreatic islets permeabilized with digitonin and incubated in Ca-EGTA buffers to fix free Ca2+ concentration at arbitrary levels. Ca2+ induced insulin release in a concentration-dependent manner with the threshold being between 0.1 and 1 μM. The hormone release was increased by forskolin and 12-O-tetradecanoyl phorbol-13-acetate (TPA), a potent activator of adenylate cyclase and that of protein kinase C, respectively. The findings suggest that activation of both protein kinase A and protein kinase C modulate insulin release without a concomitant increase in cytosolic free Ca2+
AbstractIsolated rat islets of Langerhans permeabilised by high-voltage discharge secreted insulin i...
AbstractIn unstimulated rat islets (2 mM glucose), most of the ion-exchange purified protein kinase ...
The calcium-sensing receptor gene was recently shown to be expressed in rat pancreatic islets and pu...
Insulin secretion is known to depend on an increase in intracellular Ca2+ concentration ([Ca2+](i))....
Insulin secretion stimulated by 10 mM glucose was potentiated by forskolin, an activator of adenyl c...
AbstractIsolated rat islets of Langerhans permeabilised by high-voltage discharge secreted insulin i...
Although insulin secretion is usually regarded as a Ca2+-dependent mechanism, recent studies have su...
AbstractAlthough insulin secretion is usually regarded as a Ca2+-dependent mechanism, recent studies...
AbstractRat pancreatic islet homogenates display protein kinase C activity. This phospholipid-depend...
Nutrient augmentation of Ca2-triggered insulin re-lease occurs in an ATP-sensitive K (KATP) channel...
AbstractThe evidence for the involvement of protein kinase C (PKC) in insulin secretion stimulated b...
The role of Ca2+ on insulin release has been studied by the use of ionophore A23187. The ionophore c...
The evidence for the involvement of protein kinase C (PKC) in insulin secretion stimulated by glucos...
The role of Ca2+ in secretagogue-induced insulin release is documented not only by the measurements ...
Amplification of insulin secretion by cAMP is mediated by protein kinase A (PKA) and exchange protei...
AbstractIsolated rat islets of Langerhans permeabilised by high-voltage discharge secreted insulin i...
AbstractIn unstimulated rat islets (2 mM glucose), most of the ion-exchange purified protein kinase ...
The calcium-sensing receptor gene was recently shown to be expressed in rat pancreatic islets and pu...
Insulin secretion is known to depend on an increase in intracellular Ca2+ concentration ([Ca2+](i))....
Insulin secretion stimulated by 10 mM glucose was potentiated by forskolin, an activator of adenyl c...
AbstractIsolated rat islets of Langerhans permeabilised by high-voltage discharge secreted insulin i...
Although insulin secretion is usually regarded as a Ca2+-dependent mechanism, recent studies have su...
AbstractAlthough insulin secretion is usually regarded as a Ca2+-dependent mechanism, recent studies...
AbstractRat pancreatic islet homogenates display protein kinase C activity. This phospholipid-depend...
Nutrient augmentation of Ca2-triggered insulin re-lease occurs in an ATP-sensitive K (KATP) channel...
AbstractThe evidence for the involvement of protein kinase C (PKC) in insulin secretion stimulated b...
The role of Ca2+ on insulin release has been studied by the use of ionophore A23187. The ionophore c...
The evidence for the involvement of protein kinase C (PKC) in insulin secretion stimulated by glucos...
The role of Ca2+ in secretagogue-induced insulin release is documented not only by the measurements ...
Amplification of insulin secretion by cAMP is mediated by protein kinase A (PKA) and exchange protei...
AbstractIsolated rat islets of Langerhans permeabilised by high-voltage discharge secreted insulin i...
AbstractIn unstimulated rat islets (2 mM glucose), most of the ion-exchange purified protein kinase ...
The calcium-sensing receptor gene was recently shown to be expressed in rat pancreatic islets and pu...