Zhang Yi, Liu Yunfeng, Qu Jihong, Hardy Alexandre, Zhang Nina, Diao Jingyu, Strijbos Paul J, Tsushima Robert, Robinson Richard B, Gaisano Herbert Y, Wang Qinghua, Wheeler Michael B
Department of Physiology, University of Toronto, Room 7310, Medical Sciences Building, 1 King's College Circle, Toronto, Ontario, Canada M5S 1A8.
J Endocrinol. 2009 Oct;203(1):45-53. doi: 10.1677/JOE-09-0068. Epub 2009 Aug 4.
Hyperpolarization-activated cyclic nucleotide-gated (HCN) channels regulate pacemaker activity in some cardiac cells and neurons. In the present study, we have identified the presence of HCN channels in pancreatic beta-cells. We then examined the functional characterization of these channels in beta-cells via modulating HCN channel activity genetically and pharmacologically. Voltage-clamp experiments showed that over-expression of HCN2 in rat beta-cells significantly increased HCN current (I(h)), whereas expression of dominant-negative HCN2 (HCN2-AYA) completely suppressed endogenous I(h). Compared to control beta-cells, over-expression of I(h) increased insulin secretion at 2.8 mmol/l glucose. However, suppression of I(h) did not affect insulin secretion at both 2.8 and 11.1 mmol/l glucose. Current-clamp measurements revealed that HCN2 over-expression significantly reduced beta-cell membrane input resistance (R(in)), and resulted in a less-hyperpolarizing membrane response to the currents injected into the cell. Conversely, dominant negative HCN2-AYA expression led to a substantial increase of R(in), which was associated with a more hyperpolarizing membrane response to the currents injected. Remarkably, under low extracellular potassium conditions (2.5 mmol/l K(+)), suppression of I(h) resulted in increased membrane hyperpolarization and decreased insulin secretion. We conclude that I(h) in beta-cells possess the potential to modulate beta-cell membrane potential and insulin secretion under hypokalemic conditions.
超极化激活的环核苷酸门控(HCN)通道调节某些心脏细胞和神经元中的起搏活动。在本研究中,我们已确定胰腺β细胞中存在HCN通道。然后,我们通过基因和药理学方法调节HCN通道活性,研究了这些通道在β细胞中的功能特性。电压钳实验表明,大鼠β细胞中HCN2的过表达显著增加了HCN电流(I(h)),而显性负性HCN2(HCN2-AYA)的表达则完全抑制了内源性I(h)。与对照β细胞相比,I(h)的过表达在2.8 mmol/l葡萄糖浓度下增加了胰岛素分泌。然而,I(h)的抑制在2.8和11.1 mmol/l葡萄糖浓度下均不影响胰岛素分泌。电流钳测量显示,HCN2的过表达显著降低了β细胞膜输入电阻(R(in)),并导致对注入细胞的电流产生的膜超极化反应减弱。相反,显性负性HCN2-AYA的表达导致R(in)大幅增加,这与对注入电流产生更强的膜超极化反应相关。值得注意的是,在低细胞外钾条件(2.5 mmol/l K(+))下,I(h)的抑制导致膜超极化增加和胰岛素分泌减少。我们得出结论,β细胞中的I(h)在低钾血症条件下具有调节β细胞膜电位和胰岛素分泌的潜力。