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兔门静脉中通过相反蛋白激酶的环核苷酸交叉激活对钙离子通道的调节

Modulation of Ca2+ channels by cyclic nucleotide cross activation of opposing protein kinases in rabbit portal vein.

作者信息

Ruiz-Velasco V, Zhong J, Hume J R, Keef K D

机构信息

Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, USA.

出版信息

Circ Res. 1998 Mar 23;82(5):557-65. doi: 10.1161/01.res.82.5.557.

Abstract

Cyclic nucleotides are known to modify voltage-gated (L-type) Ca2+ channel activity in vascular smooth muscle cells, but the exact mechanism(s) underlying these effects is not well defined. The purpose of the present study was to investigate the modulatory role of the cAMP- and cGMP-dependent protein kinase (PKA and PKG, respectively) pathways in Ca2+ channel function by using both conventional and perforated-patch-clamp techniques in rabbit portal vein myocytes. The membrane-permeable cAMP derivative, 8-bromo cAMP (0.1 to 10 micromol/L), significantly increased (14% to 16%) peak Ba2+ currents, whereas higher concentrations (0.05 to 0.1 mmol/L) decreased Ba2+ currents (23% to 31%). In contrast, 8-bromo cGMP inhibited Ba2+ currents at all concentrations tested (0.01 to 1 mmol/L). Basal Ca2+ channel currents were significantly inhibited by the PKA blocker 8-Bromo-2'-O-monobutyryladenosine-3',5'-monophosphorothioate, Rp-isomer (Rp 8-Br-MP cAMPS, 30 micromol/L) and enhanced by the PKG inhibitor beta-Phenyl-1,N2-etheno-8-bromoguanosine-3',5'-monophosphorothioate, Rp-isomer (Rp-8-Br PET cGMPS, 10 nmol/L). In the presence of Rp 8-bromo PET cGMPS (10 to 100 nmol/L), both 8-bromo cAMP (0.1 mmol/L) and 8-bromo cGMP (0.1 mmol/L) enhanced Ba2+ currents (13% to 39%). The excitatory effect of 8-bromo cGMP was blocked by Rp 8-bromo MB-cAMPS. Both 8-bromo cAMP (0.05 mmol/L) and forskolin (10 micromol/L) elicited time-dependent effects, including an initial enhancement followed by suppression of Ba2+ currents. Ba2+ currents were also enhanced when cells were dialyzed with the catalytic subunit of PKA. This effect was reversed by the PKA blocker KT 5720 (200 nmol/L). Our results suggest that cAMP/PKA stimulation enhances and cGMP/PKG stimulation inhibits L-type Ca2+ channel activity in rabbit portal vein myocytes. Our results further suggest that both cAMP and cGMP have a primary action mediated by their own kinase as well as a secondary action mediated by the opposing kinase.

摘要

已知环核苷酸可调节血管平滑肌细胞中电压门控(L型)Ca2+通道的活性,但其作用的确切机制尚不清楚。本研究的目的是通过在兔门静脉肌细胞中使用传统的和穿孔膜片钳技术,研究环磷酸腺苷(cAMP)依赖性蛋白激酶(PKA)和环磷酸鸟苷(cGMP)依赖性蛋白激酶(PKG)途径在Ca2+通道功能中的调节作用。膜通透性cAMP衍生物8-溴环磷酸腺苷(8-Br-cAMP,0.1至10 μmol/L)可显著增加(14%至16%)Ba2+电流峰值,而较高浓度(0.05至0.1 mmol/L)则降低Ba2+电流(23%至31%)。相反,8-溴环磷酸鸟苷(8-Br-cGMP)在所有测试浓度(0.01至1 mmol/L)下均抑制Ba2+电流。基础Ca2+通道电流被PKA阻滞剂8-溴-2'-O-单丁酰腺苷-3',5'-单磷酸硫代酯,Rp-异构体(Rp-8-Br-MP cAMPS,30 μmol/L)显著抑制,并被PKG抑制剂β-苯基-1,N2-乙烯基-8-溴鸟苷-3',5'-单磷酸硫代酯,Rp-异构体(Rp-8-Br PET cGMPS,10 nmol/L)增强。在存在Rp-8-Br PET cGMPS(10至100 nmol/L)的情况下,8-溴环磷酸腺苷(0.1 mmol/L)和8-溴环磷酸鸟苷(0.1 mmol/L)均增强Ba2+电流(13%至39%)。8-溴环磷酸鸟苷的兴奋作用被Rp-8-溴MB-cAMPS阻断。8-溴环磷酸腺苷(0.05 mmol/L)和福斯可林(10 μmol/L)均引起时间依赖性效应,包括最初的增强随后是Ba2+电流抑制。当用PKA催化亚基透析细胞时,Ba2+电流也增强。这种效应被PKA阻滞剂KT 5720(200 nmol/L)逆转。我们的结果表明,cAMP/PKA刺激增强而cGMP/PKG刺激抑制兔门静脉肌细胞中L型Ca2+通道的活性。我们的结果进一步表明,cAMP和cGMP均具有由其自身激酶介导的主要作用以及由相反激酶介导的次要作用。

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