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糖尿病 GK/Par 大鼠β细胞中环腺苷酸分泌偶联受损:GLP-1 可纠正这一缺陷。

cAMP-secretion coupling is impaired in diabetic GK/Par rat β-cells: a defect counteracted by GLP-1.

机构信息

Université Paris-Diderot, Sorbonne-Paris-Cité, Laboratoire B2PE (Biologie et Pathologie du Pancreas Endocrine), Unité Biologie Fonctionnelle et Adaptive, EAC 4413, Centre National de Recherche Scientifique, Paris, France.

出版信息

Am J Physiol Endocrinol Metab. 2011 Nov;301(5):E797-806. doi: 10.1152/ajpendo.00652.2010. Epub 2011 Jul 12.

Abstract

cAMP-raising agents with glucagon-like peptide-1 (GLP-1) as the first in class, exhibit multiple actions that are beneficial for the treatment of type 2 diabetic (T2D) patients, including improvement of glucose-induced insulin secretion (GIIS). To gain additional insight into the role of cAMP in the disturbed stimulus-secretion coupling within the diabetic β-cell, we examined more thoroughly the relationship between changes in islet cAMP concentration and insulin release in the GK/Par rat model of T2D. Basal cAMP content in GK/Par islets was significantly higher, whereas their basal insulin release was not significantly different from that of Wistar (W) islets. Even in the presence of IBMX or GLP-1, their insulin release did not significantly change despite further enhanced cAMP accumulation in both cases. The high basal cAMP level most likely reflects an increased cAMP generation in GK/Par compared with W islets since 1) forskolin dose-dependently induced an exaggerated cAMP accumulation; 2) adenylyl cyclase (AC)2, AC3, and G(s)α proteins were overexpressed; 3) IBMX-activated cAMP accumulation was less efficient and PDE-3B and PDE-1C mRNA were decreased. Moreover, the GK/Par insulin release apparatus appears less sensitive to cAMP, since GK/Par islets released less insulin at submaximal cAMP levels and required five times more cAMP to reach a maximal secretion rate no longer different from W. GLP-1 was able to reactivate GK/Par insulin secretion so that GIIS became indistinguishable from that of W. The exaggerated cAMP production is instrumental, since GLP-1-induced GIIS reactivation was lost in the presence the AC blocker 2',5'-dideoxyadenosine. This GLP-1 effect takes place in the absence of any improvement of the Ca(2+) response and correlates with activation of the cAMP-dependent PKA-dependent pathway.

摘要

以胰高血糖素样肽-1 (GLP-1) 为代表的 cAMP 升高剂具有多种作用,有利于治疗 2 型糖尿病 (T2D) 患者,包括改善葡萄糖诱导的胰岛素分泌 (GIIS)。为了更深入地了解 cAMP 在糖尿病 β 细胞中受损的刺激-分泌偶联中的作用,我们更仔细地研究了胰岛 cAMP 浓度变化与 GK/Par 大鼠 T2D 模型中胰岛素释放之间的关系。GK/Par 胰岛的基础 cAMP 含量明显更高,而它们的基础胰岛素释放与 Wistar (W) 胰岛没有明显差异。即使在 IBMX 或 GLP-1 的存在下,它们的胰岛素释放也没有明显变化,尽管在两种情况下 cAMP 积累进一步增强。高基础 cAMP 水平很可能反映了 GK/Par 与 W 胰岛相比,cAMP 生成增加,原因是:1) forskolin 剂量依赖性地诱导了夸张的 cAMP 积累;2) 腺苷酸环化酶 (AC)2、AC3 和 G(s)α 蛋白过表达;3) IBMX 激活的 cAMP 积累效率较低,PDE-3B 和 PDE-1C mRNA 减少。此外,GK/Par 胰岛素释放装置对 cAMP 的敏感性似乎较低,因为 GK/Par 胰岛在亚最大 cAMP 水平下释放的胰岛素较少,并且需要五倍以上的 cAMP 才能达到不再与 W 不同的最大分泌速率。GLP-1 能够重新激活 GK/Par 胰岛素分泌,从而使 GIIS 与 W 的 GIIS 无法区分。夸张的 cAMP 产生是至关重要的,因为在 AC 阻断剂 2',5'-二脱氧腺苷存在下,GLP-1 诱导的 GIIS 重新激活丢失。这种 GLP-1 作用发生在没有任何改善 Ca(2+) 反应的情况下,并且与 cAMP 依赖性 PKA 依赖性途径的激活相关。

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