Archer S L, Huang J M, Hampl V, Nelson D P, Shultz P J, Weir E K
Cardiovascular Section (111C), Veterans Affairs Medical Center, Minneapolis, MN 55417.
Proc Natl Acad Sci U S A. 1994 Aug 2;91(16):7583-7. doi: 10.1073/pnas.91.16.7583.
Nitric oxide (NO)-induced relaxation is associated with increased levels of cGMP in vascular smooth muscle cells. However, the mechanism by which cGMP causes relaxation is unknown. This study tested the hypothesis that activation of Ca-sensitive K (KCa) channels, mediated by a cGMP-dependent protein kinase, is responsible for the relaxation occurring in response to cGMP. In rat pulmonary artery rings, cGMP-dependent, but not cGMP-independent, relaxation was inhibited by tetraethylammonium, a classical K-channel blocker, and charybdotoxin, an inhibitor of KCa channels. Increasing extracellular K concentration also inhibited cGMP-dependent relaxation, without reducing vascular smooth muscle cGMP levels. In whole-cell patch-clamp experiments, NO and cGMP increased whole-cell K current by activating KCa channels. This effect was mimicked by intracellular administration of (Sp)-guanosine cyclic 3',5'-phosphorothioate, a preferential cGMP-dependent protein kinase activator. Okadaic acid, a phosphatase inhibitor, enhanced whole-cell K current, consistent with an important role for channel phosphorylation in the activation of NO-responsive KCa channels. Thus NO and cGMP relax vascular smooth muscle by a cGMP-dependent protein kinase-dependent activation of K channels. This suggests that the final common pathway shared by NO and the nitrovasodilators is cGMP-dependent K-channel activation.
一氧化氮(NO)诱导的舒张与血管平滑肌细胞中cGMP水平升高有关。然而,cGMP导致舒张的机制尚不清楚。本研究检验了以下假设:由cGMP依赖性蛋白激酶介导的钙敏感性钾(KCa)通道激活是cGMP诱导舒张的原因。在大鼠肺动脉环中,经典的钾通道阻滞剂四乙铵和KCa通道抑制剂蝎毒素可抑制cGMP依赖性而非cGMP非依赖性舒张。增加细胞外钾浓度也可抑制cGMP依赖性舒张,而不降低血管平滑肌cGMP水平。在全细胞膜片钳实验中,NO和cGMP通过激活KCa通道增加全细胞钾电流。这种效应可被细胞内给予(Sp)-鸟苷环3',5'-硫代磷酸酯模拟,后者是一种优先的cGMP依赖性蛋白激酶激活剂。磷酸酶抑制剂冈田酸可增强全细胞钾电流,这与通道磷酸化在NO反应性KCa通道激活中的重要作用一致。因此,NO和cGMP通过cGMP依赖性蛋白激酶依赖性激活钾通道使血管平滑肌舒张。这表明NO和硝基血管扩张剂共有的最终共同途径是cGMP依赖性钾通道激活。