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TASK-1对人肺动脉平滑肌细胞的影响。

Impact of TASK-1 in human pulmonary artery smooth muscle cells.

作者信息

Olschewski Andrea, Li Yingji, Tang Bi, Hanze Jörg, Eul Bastian, Bohle Rainer M, Wilhelm Jochen, Morty Rory E, Brau Michael E, Weir E Kenneth, Kwapiszewska Grazyna, Klepetko Walter, Seeger Werner, Olschewski Horst

机构信息

Department of Anaesthesiology, Intensive Care Medicine, Medical University Graz, A-8029 Graz, Austria.

出版信息

Circ Res. 2006 Apr 28;98(8):1072-80. doi: 10.1161/01.RES.0000219677.12988.e9. Epub 2006 Mar 30.

Abstract

The excitability of pulmonary artery smooth muscle cells (PASMC) is regulated by potassium (K+) conductances. Although studies suggest that background K+ currents carried by 2-pore domain K+ channels are important regulators of resting membrane potential in PASMC, their role in human PASMC is unknown. Our study tested the hypothesis that TASK-1 leak K+ channels contribute to the K+ current and resting membrane potential in human PASMC. We used the whole-cell patch-clamp technique and TASK-1 small interfering RNA (siRNA). Noninactivating K+ current performed by TASK-1 K+ channels were identified by current characteristics and inhibition by anandamide and acidosis (pH 6.3), each resulting in significant membrane depolarization. Moreover, we showed that TASK-1 is blocked by moderate hypoxia and activated by treprostinil at clinically relevant concentrations. This is mediated via protein kinase A (PKA)-dependent phosphorylation of TASK-1. To further confirm the role of TASK-1 channels in regulation of resting membrane potential, we knocked down TASK-1 expression using TASK-1 siRNA. The knockdown of TASK-1 was reflected by a significant depolarization of resting membrane potential. Treatment of human PASMC with TASK-1 siRNA resulted in loss of sensitivity to anandamide, acidosis, alkalosis, hypoxia, and treprostinil. These results suggest that (1) TASK-1 is expressed in human PASMC; (2) TASK-1 is hypoxia-sensitive and controls the resting membrane potential, thus implicating an important role for TASK-1 K+ channels in the regulation of pulmonary vascular tone; and (3) treprostinil activates TASK-1 at clinically relevant concentrations via PKA, which might represent an important mechanism underlying the vasorelaxing properties of prostanoids and their beneficial effect in vivo.

摘要

肺动脉平滑肌细胞(PASMC)的兴奋性受钾离子(K +)电导调节。尽管研究表明,由2孔结构域K +通道携带的背景K +电流是PASMC静息膜电位的重要调节因子,但其在人PASMC中的作用尚不清楚。我们的研究检验了TASK-1钾离子泄漏通道对人PASMC中的K +电流和静息膜电位有影响这一假设。我们使用了全细胞膜片钳技术和TASK-1小干扰RNA(siRNA)。通过电流特性以及花生四烯酸乙醇胺和酸中毒(pH 6.3)的抑制作用鉴定了由TASK-1 K +通道产生的非失活性K +电流,二者均导致明显的膜去极化。此外,我们发现,在临床相关浓度下,TASK-1被中度缺氧阻断,并被曲前列尼尔激活。这是通过蛋白激酶A(PKA)依赖性的TASK-1磷酸化介导的。为了进一步证实TASK-1通道在调节静息膜电位中的作用,我们使用TASK-1 siRNA敲低了TASK-1的表达。静息膜电位的显著去极化反映了TASK-1的敲低。用TASK-1 siRNA处理人PASMC导致对花生四烯酸乙醇胺、酸中毒、碱中毒、缺氧和曲前列尼尔的敏感性丧失。这些结果表明:(1)TASK-1在人PASMC中表达;(2)TASK-1对缺氧敏感并控制静息膜电位,因此暗示TASK-1 K +通道在调节肺血管张力中起重要作用;(3)曲前列尼尔在临床相关浓度下通过PKA激活TASK-1,这可能是前列腺素血管舒张特性及其体内有益作用的重要潜在机制。

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