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胞质型磷脂酶A2途径,大鼠β2肾上腺素能心脏效应的一种保护机制。

The cytosolic phospholipase A2 pathway, a safeguard of beta2-adrenergic cardiac effects in rat.

作者信息

Ait-Mamar Bouziane, Cailleret Michel, Rucker-Martin Catherine, Bouabdallah Anissa, Candiani Gabriele, Adamy Christophe, Duvaldestin Philippe, Pecker Francoise, Defer Nicole, Pavoine Catherine

机构信息

Inserm, U581, University of Paris, XII-Val de Marne, Créteil F-94010, France.

出版信息

J Biol Chem. 2005 May 13;280(19):18881-90. doi: 10.1074/jbc.M410305200. Epub 2005 Feb 22.

Abstract

We have recently demonstrated that in human heart, beta2-adrenergic receptors (beta2-ARs) are biochemically coupled not only to the classical adenylyl cyclase (AC) pathway but also to the cytosolic phospholipase A2 (cPLA2) pathway (Pavoine, C., Behforouz, N., Gauthier, C., Le Gouvello, S., Roudot-Thoraval, F., Martin, C. R., Pawlak, A., Feral, C., Defer, N., Houel, R., Magne, S., Amadou, A., Loisance, D., Duvaldestin, P., and Pecker, F. (2003) Mol. Pharmacol. 64, 1117-1125). In this study, using Fura-2-loaded cardiomyocytes isolated from adult rats, we showed that stimulation of beta2-ARs triggered an increase in the amplitude of electrically stimulated [Ca2+]i transients and contractions. This effect was abolished with the PKA inhibitor, H89, but greatly enhanced upon addition of the selective cPLA2 inhibitor, AACOCF3. The beta2-AR/cPLA2 inhibitory pathway involved G(i) and MSK1. Potentiation of beta2-AR/AC/PKA-induced Ca2+ responses by AACOCF3 did not rely on the enhancement of AC activity but was associated with eNOS phosphorylation (Ser1177) and L-NAME-sensitive NO production. This was correlated with PKA-dependent phosphorylation of PLB (Ser16). The constraint exerted by the beta2-AR/cPLA2 pathway on the beta2-AR/AC/PKA-induced Ca2+ responses required integrity of caveolar structures and was impaired by Filipin III treatment. Immunoblot analyses demonstrated zinterol-induced translocation of cPLA and its cosedimentation with MSK1, eNOS, PLB, and sarcoplasmic reticulum Ca2+ pump (SERCA) 2a in a low density caveolin-3-enriched membrane fraction. This inferred the gathering of beta2-AR signaling effectors around caveolae/sarcoplasmic reticulum (SR) functional platforms. Taken together, these data highlight cPLA as a cardiac beta2-AR signaling pathway that limits beta2-AR/AC/PKA-induced Ca2+ responses in adult rat cardiomyocytes through the impairment of eNOS activation and PLB phosphorylation.

摘要

我们最近证明,在人类心脏中,β2-肾上腺素能受体(β2-ARs)不仅在生化上与经典的腺苷酸环化酶(AC)途径偶联,还与胞质磷脂酶A2(cPLA2)途径偶联(帕瓦因,C.,贝福鲁兹,N.,高蒂尔,C.,勒古韦洛,S.,鲁多特-托拉瓦尔,F.,马丁,C.R.,帕瓦克,A.,费拉尔,C.,德费尔,N.,胡埃尔,R.,马涅,S.,阿马杜,A.,洛伊斯桑斯,D.,迪瓦尔代斯汀,P.,以及佩克,F.(2003年)《分子药理学》64卷,第1117 - 1125页)。在本研究中,我们使用从成年大鼠分离的负载Fura - 2的心肌细胞,表明刺激β2-ARs会引发电刺激的[Ca2 +]i瞬变幅度和收缩的增加。PKA抑制剂H89可消除这种效应,但添加选择性cPLA2抑制剂AACOCF3后,这种效应会大大增强。β2-AR/cPLA2抑制途径涉及G(i)和MSK1。AACOCF3对β2-AR/AC/PKA诱导的Ca2 +反应的增强并不依赖于AC活性的增强,而是与eNOS磷酸化(Ser1177)和L - NAME敏感的NO产生有关。这与PLB(Ser16)的PKA依赖性磷酸化相关。β2-AR/cPLA2途径对β2-AR/AC/PKA诱导的Ca2 +反应施加的限制需要小窝结构的完整性,并且用菲律宾菌素III处理会受损。免疫印迹分析表明,齐特罗尔诱导cPLA的转位及其与MSK1、eNOS、PLB和肌浆网Ca2 +泵(SERCA)2a在富含小窝蛋白-3的低密度膜组分中共沉降。这推断β2-AR信号效应器聚集在小窝/肌浆网(SR)功能平台周围。综上所述,这些数据突出了cPLA作为一种心脏β2-AR信号通路,它通过损害eNOS激活和PLB磷酸化来限制成年大鼠心肌细胞中β2-AR/AC/PKA诱导的Ca2 +反应。

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