Literature DB >> 11873862

Norepinephrine inhibits glucose-stimulated, Ca2+-independent insulin release independently from its action on adenylyl cyclase.

H Yajima1, M Komatsu, Y Sato, S Yamada, K Yamauchi, G W Sharp, T Aizawa, K Hashizume.   

Abstract

Inhibition of insulin release by norepinephrine has been attributed to activation of ATP-sensitive K+ channels, inactivation of voltage-dependent Ca2+ channels, and inhibition of adenylyl cyclase. However, direct inhibitory action of norepinephrine at a distal site of stimulus-secretion coupling has also been suggested. To obtain more direct evidence for norepinephrine inhibition of insulin release at a distal site, we performed experiments in intact, non-permeabilized beta cells. In rat pancreatic islets, a combination of glucose, phorbol ester and forskolin under stringent Ca2+-free conditions was used as a trigger of insulin exocytosis at a distal site. Norepinephrine inhibited this Ca2+-independent insulin release in a concentration-dependent manner, with an IC50 of 50 nM. The inhibition was complete, reversible, and pertussis toxin-sensitive, and not associated with any reduction of cAMP content in the islet cells. In conclusion, norepinephrine strongly, yet reversibly, inhibits insulin release in intact beta cells at a late step of exocytosis, through pertussis toxin-sensitive, G protein-mediated mechanism(s).

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Year:  2001        PMID: 11873862     DOI: 10.1507/endocrj.48.647

Source DB:  PubMed          Journal:  Endocr J        ISSN: 0918-8959            Impact factor:   2.349


  2 in total

Review 1.  VMAT2 gene expression and function as it applies to imaging beta-cell mass.

Authors:  Paul E Harris; Caterina Ferrara; Pasquale Barba; Teresa Polito; Matthew Freeby; Antonella Maffei
Journal:  J Mol Med (Berl)       Date:  2007-07-31       Impact factor: 4.599

2.  The Brain-to-Pancreatic Islet Neuronal Map Reveals Differential Glucose Regulation From Distinct Hypothalamic Regions.

Authors:  Wilfredo Rosario; Inderroop Singh; Arnaud Wautlet; Christa Patterson; Jonathan Flak; Thomas C Becker; Almas Ali; Natalia Tamarina; Louis H Philipson; Lynn W Enquist; Martin G Myers; Christopher J Rhodes
Journal:  Diabetes       Date:  2016-04-12       Impact factor: 9.461

  2 in total

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