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Cortistatin regulates glucose-induced electrical activity and insulin secretion in mouse pancreatic beta-cells

Authors :
Universidad de Alicante. Departamento de Fisiología, Genética y Microbiología
Soriano, Sergi
Castellano-Muñoz, Manuel
Rafacho, Alex
Alonso Magdalena, Paloma
Marroquí, Laura
Ruiz, Antonia
Bru-Tarí, Eva
Merino, Beatriz
Irles, Esperanza
Bello, Melisa
Iborra, Pau
Villar-Pazos, Sabrina
Vettorazzi, Jean Franciesco
Montanya, Eduard
Luque, Raúl M.
Nadal, Ángel
Quesada, Iván
Universidad de Alicante. Departamento de Fisiología, Genética y Microbiología
Soriano, Sergi
Castellano-Muñoz, Manuel
Rafacho, Alex
Alonso Magdalena, Paloma
Marroquí, Laura
Ruiz, Antonia
Bru-Tarí, Eva
Merino, Beatriz
Irles, Esperanza
Bello, Melisa
Iborra, Pau
Villar-Pazos, Sabrina
Vettorazzi, Jean Franciesco
Montanya, Eduard
Luque, Raúl M.
Nadal, Ángel
Quesada, Iván
Publication Year :
2018

Abstract

Although there is growing evidence that cortistatin regulates several functions in different tissues, its role in the endocrine pancreas is not totally known. Here, we aim to study the effect of cortistatin on pancreatic beta-cells and glucose-stimulated insulin secretion (GSIS). Exposure of isolated mouse islets to cortistatin inhibited GSIS. This effect was prevented using a somatostatin receptor antagonist. Additionally, cortistatin hyperpolarized the membrane potential and reduced glucose-induced action potentials in isolated pancreatic beta-cells. Cortistatin did not modify ATP-dependent K+ (KATP) channel activity. In contrast, cortistatin increased the activity of a small conductance channel with characteristics of G protein-coupled inwardly rectifying K+ (GIRK) channels. The cortistatin effects on membrane potential and GSIS were largely reduced in the presence of a GIRK channel antagonist and by down-regulation of GIRK2 with small interfering RNA. Thus, cortistatin acts as an inhibitory signal for glucose-induced electrical activity and insulin secretion in the mouse pancreatic beta-cell.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286027069
Document Type :
Electronic Resource