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电压门控钙通道在胰腺β细胞生理和病理生理中的作用。

The role of voltage-gated calcium channels in pancreatic beta-cell physiology and pathophysiology.

作者信息

Yang Shao-Nian, Berggren Per-Olof

机构信息

The Rolf Luft Research Center for Diabetes and Endocrinology L1:03, Karolinska University Hospital Solna, SE-171 76 Stockholm, Sweden.

出版信息

Endocr Rev. 2006 Oct;27(6):621-76. doi: 10.1210/er.2005-0888. Epub 2006 Jul 25.

Abstract

Voltage-gated calcium (CaV) channels are ubiquitously expressed in various cell types throughout the body. In principle, the molecular identity, biophysical profile, and pharmacological property of CaV channels are independent of the cell type where they reside, whereas these channels execute unique functions in different cell types, such as muscle contraction, neurotransmitter release, and hormone secretion. At least six CaValpha1 subunits, including CaV1.2, CaV1.3, CaV2.1, CaV2.2, CaV2.3, and CaV3.1, have been identified in pancreatic beta-cells. These pore-forming subunits complex with certain auxiliary subunits to conduct L-, P/Q-, N-, R-, and T-type CaV currents, respectively. beta-Cell CaV channels take center stage in insulin secretion and play an important role in beta-cell physiology and pathophysiology. CaV3 channels become expressed in diabetes-prone mouse beta-cells. Point mutation in the human CaV1.2 gene results in excessive insulin secretion. Trinucleotide expansion in the human CaV1.3 and CaV2.1 gene is revealed in a subgroup of patients with type 2 diabetes. beta-Cell CaV channels are regulated by a wide range of mechanisms, either shared by other cell types or specific to beta-cells, to always guarantee a satisfactory concentration of Ca2+. Inappropriate regulation of beta-cell CaV channels causes beta-cell dysfunction and even death manifested in both type 1 and type 2 diabetes. This review summarizes current knowledge of CaV channels in beta-cell physiology and pathophysiology.

摘要

电压门控性钙(CaV)通道在全身各种细胞类型中普遍表达。原则上,CaV通道的分子身份、生物物理特性和药理特性与其所在的细胞类型无关,然而这些通道在不同细胞类型中执行独特的功能,如肌肉收缩、神经递质释放和激素分泌。在胰腺β细胞中已鉴定出至少六种CaVα1亚基,包括CaV1.2、CaV1.3、CaV2.1、CaV2.2、CaV2.3和CaV3.1。这些形成孔道的亚基分别与某些辅助亚基结合,以传导L型、P/Q型、N型、R型和T型CaV电流。β细胞CaV通道在胰岛素分泌中起核心作用,在β细胞生理和病理生理中发挥重要作用。CaV3通道在易患糖尿病的小鼠β细胞中表达。人类CaV1.2基因的点突变导致胰岛素过度分泌。在2型糖尿病患者的一个亚组中发现了人类CaV1.3和CaV2.1基因的三核苷酸扩增。β细胞CaV通道受多种机制调节,这些机制要么是其他细胞类型共有的,要么是β细胞特有的,以始终保证满意的Ca2+浓度。β细胞CaV通道的调节不当会导致β细胞功能障碍甚至死亡,这在1型和2型糖尿病中均有表现。本综述总结了目前关于β细胞生理和病理生理中CaV通道的知识。

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