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- 2004
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Mark
A pancreatic islet-specific microRNA regulates insulin secretion
(
- Contribution to journal › Article
- 2003
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Mark
SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells.
(
- Contribution to journal › Article
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Mark
Phosphatidylinositol 4-kinase serves as a metabolic sensor and regulates priming of secretory granules in pancreatic beta cells
(
- Contribution to journal › Article
-
Mark
Insulin granule dynamics in pancreatic beta cells
(
- Contribution to journal › Scientific review
- 2002
-
Mark
Fast insulin secretion reflects exocytosis of docked granules in mouse pancreatic B-cells.
(
- Contribution to journal › Article
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Mark
A Subset of 50 Secretory Granules in Close Contact With L-Type Ca(2+) Channels Accounts for First-Phase Insulin Secretion in Mouse beta-Cells.
(
- Contribution to journal › Article
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Mark
Sulfonylurea-Mediated Stimulation of Insulin Exocytosis via an ATP-Sensitive K(+) Channel--Independent Action.
(
- Contribution to journal › Article
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Mark
Nateglinide, but not repaglinide, stimulates growth hormone release in rat pituitary cells by inhibition of K+ channels and stimulation of cyclic AMP-dependent exocytosis
(
- Contribution to journal › Article
- 2001
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Mark
Priming of insulin granules for exocytosis by granular Cl(-) uptake and acidification
(
- Contribution to journal › Article
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Mark
Perchlorate stimulates insulin secretion by shifting the gating of L-type Ca2+ currents in mouse pancreatic B-cells towards negative potentials
(
- Contribution to journal › Article
- 2000
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Mark
Tight coupling between electrical activity and exocytosis in mouse glucagon-secreting alpha-cells
(
- Contribution to journal › Article
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Mark
The Cell Physiology of Biphasic Insulin Secretion
(
- Contribution to journal › Article
- 1999
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Mark
Cell biology. Glutamate primes the pump
(
- Contribution to journal › Article
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Mark
The stimulatory action of tolbutamide on Ca2+-dependent exocytosis in pancreatic beta cells is mediated by a 65-kDa mdr-like P-glycoprotein
(
- Contribution to journal › Article
-
Mark
Activation of Ca(2+)-dependent K(+) channels contributes to rhythmic firing of action potentials in mouse pancreatic beta cells
(
- Contribution to journal › Article