Some cannabinoid receptor ligands and their distomers are direct-acting openers of SUR1 KATP channels

Author:

Lynch Christopher J.1,Zhou Qing2,Shyng Show-Ling2,Heal David J.3,Cheetham Sharon C.3,Dickinson Keith3,Gregory Peter4,Firnges Michael5,Nordheim Ulrich4,Goshorn Stephanie1,Reiche Dania6,Turski Lechoslaw4,Antel Jochen4

Affiliation:

1. Department of Cellular and Molecular Physiology and the Pennsylvania State Institute for Diabetes and Obesity, Pennsylvania State University College of Medicine, Hershey, Pennsylvania;

2. Department of Biochemistry and Molecular Biology, Oregon Health and Science University, Portland, Oregon;

3. RenaSci Consultancy, BioCity, Nottingham, United Kingdom;

4. Abbott Laboratories, Hannover;

5. Boehringer Ingelheim; and

6. Boehringer Ingelheim Vetmedica, Ingelheim, Germany

Abstract

Here, we examined the chronic effects of two cannabinoid receptor-1 (CB1) inverse agonists, rimonabant and ibipinabant, in hyperinsulinemic Zucker rats to determine their chronic effects on insulinemia. Rimonabant and ibipinabant (10 mg·kg−1·day−1) elicited body weight-independent improvements in insulinemia and glycemia during 10 wk of chronic treatment. To elucidate the mechanism of insulin lowering, acute in vivo and in vitro studies were then performed. Surprisingly, chronic treatment was not required for insulin lowering. In acute in vivo and in vitro studies, the CB1 inverse agonists exhibited acute K channel opener (KCO; e.g., diazoxide and NN414)-like effects on glucose tolerance and glucose-stimulated insulin secretion (GSIS) with approximately fivefold better potency than diazoxide. Followup studies implied that these effects were inconsistent with a CB1-mediated mechanism. Thus effects of several CB1 agonists, inverse agonists, and distomers during GTTs or GSIS studies using perifused rat islets were unpredictable from their known CB1 activities. In vivo rimonabant and ibipinabant caused glucose intolerance in CB1 but not SUR1-KO mice. Electrophysiological studies indicated that, compared with diazoxide, 3 μM rimonabant and ibipinabant are partial agonists for K channel opening. Partial agonism was consistent with data from radioligand binding assays designed to detect SUR1 KATP KCOs where rimonabant and ibipinabant allosterically regulated 3H-glibenclamide-specific binding in the presence of MgATP, as did diazoxide and NN414. Our findings indicate that some CB1 ligands may directly bind and allosterically regulate Kir6.2/SUR1 KATP channels like other KCOs. This mechanism appears to be compatible with and may contribute to their acute and chronic effects on GSIS and insulinemia.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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