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p21激活激酶-1对豚鼠窦房结起搏细胞L型钙通道和延迟整流钾通道活性的调节

Regulation of L-type calcium channel and delayed rectifier potassium channel activity by p21-activated kinase-1 in guinea pig sinoatrial node pacemaker cells.

作者信息

Ke Yunbo, Lei Ming, Collins Thomas P, Rakovic Stevan, Mattick Paul A D, Yamasaki Michiko, Brodie Mark S, Terrar Derek A, Solaro R John

机构信息

Department of Physiology and Biophysics and Center for Cardiovascular Research, University of Illinois at Chicago, IL, USA.

出版信息

Circ Res. 2007 May 11;100(9):1317-27. doi: 10.1161/01.RES.0000266742.51389.a4. Epub 2007 Apr 5.

Abstract

Phosphorylation of ion channels plays an important role in the regulation of cardiac function, but signaling mechanisms controlling dephosphorylation are not well understood. We have tested the hypothesis that p(21)-activated kinase-1 (Pak1), a serine-threonine protein kinase regulated by Ras-related small G proteins, regulates sinoatrial node (SAN) ion channel activity through a mechanism involving protein phosphatase 2A. We report a novel role of Pak1-mediated signaling in attenuating isoproterenol-induced enhancement of L-type Ca(2+) current (I(CaL)) and delayed rectifier potassium current (I(K)) in guinea pig SAN pacemaker cells. We demonstrate that in guinea pig SAN: (1) there is abundant expression of endogenous Pak1 in pacemaker cells; (2) expression of constitutively active Pak1 depresses isoproterenol-induced upregulation of I(CaL) and I(K); (3) inhibition of protein phosphatase 2A increases the enhancement of I(K) and I(CaL) by isoproterenol in Ad-Pak1-infected cells; (4) protein phosphatase 2A coimmunoprecipitates with endogenous Pak1 in SAN tissue; and (5) expression of constitutively active Pak1 suppresses the chronotropic action of isoproterenol on pacemaker activity of intact SAN preparations. In conclusion, our data demonstrate that a Pak1 signaling pathway exists in cardiac pacemaker cells and that this novel pathway plays a role in the regulation of ion channel activity.

摘要

离子通道的磷酸化在心脏功能调节中起着重要作用,但控制去磷酸化的信号机制尚未完全清楚。我们检验了以下假设:p21激活激酶-1(Pak1),一种受Ras相关小G蛋白调节的丝氨酸-苏氨酸蛋白激酶,通过一种涉及蛋白磷酸酶2A的机制调节窦房结(SAN)离子通道活性。我们报道了Pak1介导的信号在减弱异丙肾上腺素诱导的豚鼠SAN起搏细胞L型钙电流(I(CaL))和延迟整流钾电流(I(K))增强中的新作用。我们证明,在豚鼠SAN中:(1)起搏细胞中内源性Pak1表达丰富;(2)组成型活性Pak1的表达抑制异丙肾上腺素诱导的I(CaL)和I(K)上调;(3)在Ad-Pak1感染的细胞中,抑制蛋白磷酸酶2A可增加异丙肾上腺素对I(K)和I(CaL)的增强作用;(4)蛋白磷酸酶2A与SAN组织中的内源性Pak1共免疫沉淀;(5)组成型活性Pak1的表达抑制异丙肾上腺素对完整SAN制剂起搏活性的变时作用。总之,我们的数据表明心脏起搏细胞中存在一条Pak1信号通路,并且这条新通路在离子通道活性调节中起作用。

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