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Epac2:磺酰脲受体?

Epac2: a sulfonylurea receptor?

机构信息

Department of Molecular Cancer Research, Centre for Biomedical Genetics and Cancer Genomics Centre, University Medical Center Utrecht, Universiteitsweg 100, 3584 CG Utrecht, The Netherlands.

出版信息

Biochem Soc Trans. 2012 Feb;40(1):6-10. doi: 10.1042/BST20110640.

DOI:10.1042/BST20110640
PMID:22260657
Abstract

Sulfonylureas are widely used oral drugs in the treatment of diabetes mellitus. They function by the inhibition of ATP-sensitive K+ channels in pancreatic β-cells, which are thus considered the 'classical' sulfonylurea receptor. Next to the ATP-sensitive K+ channels, additional sulfonylurea-interacting proteins were identified, which might contribute to the physiological effects of this drug family. Most recently, Epac2 (exchange protein directly activated by cAMP 2) was added to the list of sulfonylurea receptors. However, this finding caused controversy in the literature. The critical discussion of the present paper comes to the conclusion that sulfonylureas are not able to activate Epac2 directly and are unlikely to bind to Epac2. Increased blood glucose levels after food intake result in the secretion of insulin from pancreatic β-cells. Glucose levels are detected 'indirectly' by β-cells: owing to increased glycolysis rates, the ratio of cellular ATP/ADP increases and causes the closure of ATP-sensitive K+ channels. In consequence, cells depolarize and voltage-dependent Ca2+ channels open to cause an increase in the cellular Ca2+ concentration. Finally, Ca2+ induces the fusion of insulin-containing granules with the plasma membrane. Sulfonylureas, such as tolbutamide, glibenclamide or acetohexamide, form a class of orally applicable drugs used in the treatment of non-insulin-dependent diabetes mellitus.

摘要

磺酰脲类药物是广泛用于治疗糖尿病的口服药物。它们通过抑制胰腺β细胞中的 ATP 敏感性 K + 通道起作用,因此被认为是“经典”的磺酰脲受体。除了 ATP 敏感性 K + 通道外,还鉴定出了其他与磺酰脲相互作用的蛋白质,它们可能有助于该药物家族的生理作用。最近,Epac2(cAMP 直接激活的交换蛋白 2)被添加到磺酰脲受体列表中。然而,这一发现在文献中引起了争议。本文的批判性讨论得出的结论是,磺酰脲类药物不能直接激活 Epac2,也不太可能与 Epac2 结合。进食后血糖水平升高会导致胰腺β细胞分泌胰岛素。β细胞“间接”检测血糖水平:由于糖酵解速率增加,细胞内 ATP/ADP 的比例增加,导致 ATP 敏感性 K + 通道关闭。因此,细胞去极化,电压依赖性 Ca 2+ 通道打开,导致细胞内 Ca 2+ 浓度增加。最后,Ca 2+ 诱导含胰岛素颗粒与质膜融合。甲苯磺丁脲、格列本脲或醋磺己脲等磺酰脲类药物形成了一类可口服用于治疗非胰岛素依赖型糖尿病的药物。

相似文献

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Epac2: a sulfonylurea receptor?Epac2:磺酰脲受体?
Biochem Soc Trans. 2012 Feb;40(1):6-10. doi: 10.1042/BST20110640.
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Switching from insulin to oral sulfonylureas in patients with diabetes due to Kir6.2 mutations.因Kir6.2突变导致糖尿病的患者从胰岛素转换为口服磺脲类药物治疗。
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Sulfonylurea receptors, ion channels, and fruit flies.磺酰脲受体、离子通道与果蝇。
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A mutation in the TMD0-L0 region of sulfonylurea receptor-1 (L225P) causes permanent neonatal diabetes mellitus (PNDM).磺脲类受体-1(SUR1)的TMD0-L0区域中的一个突变(L225P)导致永久性新生儿糖尿病(PNDM)。
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Shortcomings of current models of glucose-induced insulin secretion.当前葡萄糖诱导胰岛素分泌模型的缺陷。
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Noncanonical Regulation of cAMP-Dependent Insulin Secretion and Its Implications in Type 2 Diabetes.非规范调节环腺苷酸依赖的胰岛素分泌及其在 2 型糖尿病中的意义。
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The Potential of a Novel Class of EPAC-Selective Agonists to Combat Cardiovascular Inflammation.新型EPAC选择性激动剂对抗心血管炎症的潜力
J Cardiovasc Dev Dis. 2017 Dec 5;4(4):22. doi: 10.3390/jcdd4040022.
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Structure and functional roles of Epac2 (Rapgef4).Epac2(Rapgef4)的结构与功能作用
Gene. 2016 Jan 10;575(2 Pt 3):577-83. doi: 10.1016/j.gene.2015.09.029. Epub 2015 Sep 24.
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Activators of PKA and Epac distinctly influence insulin secretion and cytosolic Ca2+ in female mouse islets stimulated by glucose and tolbutamide.蛋白激酶A(PKA)和环磷腺苷效应元件结合蛋白(Epac)的激活剂对葡萄糖和甲苯磺丁脲刺激的雌性小鼠胰岛中的胰岛素分泌和胞质Ca2+有明显影响。
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