4.6 Article

GLP-2 potentiates L-type Ca2+ channel activity associated with stimulated glucose uptake in hippocampal neurons

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpendo.00585.2009

关键词

glucagon-like peptide-2; glucagon-like peptide-2 receptor; L-type calcium channel; whole cell patch clamp

资金

  1. U.S. Department of Agriculture, Agricultural Research Service (USDA/ARS) [6250-51000-043]
  2. National Institute of Diabetes and Digestive and Kidney Diseases [K01 DK-75489]
  3. National Natural Science Foundation of China (NSFC) [30728016]

向作者/读者索取更多资源

Wang Y, Guan X. GLP-2 potentiates L-type Ca2+ channel activity associated with stimulated glucose uptake in hippocampal neurons. Am J Physiol Endocrinol Metab 298: E156-E166, 2010. First published November 17, 2009; doi:10.1152/ajpendo.00585.2009.-Glucagon-like peptide-2 (GLP-2) is a neuropeptide secreted from endocrine cells in the gut and neurons in the brain. GLP-2 stimulates intestinal crypt cell proliferation and mucosal blood flow while decreasing gastric emptying and gut motility. However, a GLP-2-mediated signaling network has not been fully established in primary cells. Since the GLP-2 receptor mRNA and protein were highly expressed in the mouse hippocampus, we further characterized that human I-125-labeled GLP-21-33 specifically bound to cultured hippocampal neurons with K-d = 0.48 nM, and GLP-2 acutely induced subcellular translocalization of the early gene c-Fos. Using the whole cell patch clamp, we recorded barium currents (I-Ba) flowing through voltage-gated Ca2+ channels (VGCC) in those neurons in the presence of GLP-2 with and without inhibitors. We showed that GLP-2 (20 nM) enhanced the whole cell IBa mediated by L-type VGCC that was defined using an L-type Ca2+ channel blocker (nifedipine, 10 mu M). Moreover, GLP-2-potentiation of L-type VGCC was abolished in neurons pretreated with a PKA inhibitor (PKI14-22, 1 mu M). Finally, using a fluorescent nonmetabolized glucose analog (6-NBDG) tracing imaging, we showed that glucose was taken up directly by cultured neurons. GLP-2 increased 2-deoxy-D-[H-3] glucose uptake that was dependent upon dosage, activation of PKA, and potentiation of L-type VGCC. We conclude that GLP-2 potentiates L-type VGCC activity through activating PKA signaling, partially stimulating glucose uptake by primary cultured hippocampal neurons. The potentiation of L-type VGCC may be physiologically relevant to GLP-2-induced neuroendocrine modulation of neurotransmitter release and hormone secretion.

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