Hepatic glucagon receptor binding and glucose-lowering in vivo by peptidyl and non-peptidyl glucagon receptor antagonists

胰高血糖素 胰高血糖素受体 内分泌学 化学 内科学 胰高血糖素样肽1受体 体内 受体 受体拮抗剂 生物 胰岛素 敌手 医学 兴奋剂 生物技术
作者
Qing Dallas-Yang,Xiaolan Shen,Mathias Z. Strowski,Edward J. Brady,Richard Saperstein,Raymond E. Gibson,Deborah Szalkowski,Sajjad A. Qureshi,Mari R. Candelore,Judith E. Fenyk-Melody,Emma R. Parmee,Bei B. Zhang,Guoqiang Jiang
出处
期刊:European Journal of Pharmacology [Elsevier BV]
卷期号:501 (1-3): 225-234 被引量:42
标识
DOI:10.1016/j.ejphar.2004.08.023
摘要

Glucagon receptor antagonists have been actively pursued as potential therapeutics for the treatment of type 2 diabetes. Peptidyl and non-peptidyl glucagon receptor antagonists have been shown to block glucagon-induced blood glucose elevation in both animals and humans. How the antagonists and the glucagon receptor interact in vivo has not been reported and is the subject of the current study. Using 125I-labeled glucagon as a radiotracer, we developed an in vivo glucagon receptor occupancy assay in mice expressing a human glucagon receptor in place of the endogenous mouse glucagon receptor (hGCGR mice). Using this assay, we first showed that the glucagon receptor is expressed predominantly in liver, to a much lesser extent in kidney, and is below detection in several other tissues/organs in the mice. We subsequently showed that, at 2 mg/kg body weight (mg/pk) dosed intraperitoneally (i.p.), peptidyl glucagon receptor antagonist des-His-glucagon binds to ∼78% of the hepatic glucagon receptor and blocks an exogenous glucagon-induced blood glucose elevation in the mice. Finally, we also showed that, at 10 and 30 mg/kg dosed orally (p.o.), compound A, a non-peptidyl small molecule glucagon receptor antagonist, occupied 65–70% of the hepatic glucagon receptor, and significantly diminished exogenous glucagon-induced blood glucose elevation in the mice. At 3 mg/kg, however, compound A occupied only ∼39% of the hepatic glucagon receptor and did not affect exogenous glucagon-induced blood glucose elevation in the mice. Taken together, the results confirmed previous reports that glucagon receptors are present predominantly in the liver, and provide the first direct evidence that peptidyl and non-peptidyl glucagon receptor antagonists bind to the hepatic glucagon receptor in vivo, and that at least 60% receptor occupancy correlates with the glucose lowering efficacy by the antagonists in vivo.
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