首页> 外文期刊>American Journal of Physiology >Enhanced PKC beta II translocation and PKC beta II-RACK1 interactions in PKC epsilon-induced heart failure: a role for RACK1.
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Enhanced PKC beta II translocation and PKC beta II-RACK1 interactions in PKC epsilon-induced heart failure: a role for RACK1.

机译:PKCε诱发的心力衰竭中增强的PKC beta II易位和PKC beta II-RACK1相互作用:RACK1的作用。

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Recent investigations have established a role for the beta II-isoform of protein kinase C (PKC beta II) in the induction of cardiac hypertrophy and failure. Although receptors for activated C kinase (RACKs) have been shown to direct PKC signal transduction, the mechanism through which RACK1, a selective PKC beta II RACK, participates in PKC beta II-mediated cardiac hypertrophy and failure remains undefined. We have previously reported that PKC epsilon activation modulates the expression of RACKs, and that altered epsilon-isoform of PKC (PKC epsilon)-RACK interactions may facilitate the genesis of cardiac phenotypes in mice. Here, we present evidence that high levels of PKC epsilon activity are commensurate with impaired left ventricular function (dP/dt = 6,074 +/- 248 mmHg/s in control vs. 3,784 +/- 269 mmHg/s in transgenic) and significant myocardial hypertrophy. More importantly, we demonstrate that high levels of PKC epsilon activation induce a significant colocalization of PKC beta II with RACK1 (154 +/- 7% of control) and a marked redistribution of PKC beta II to the particulate fraction (17 +/- 2% of total PKC beta II in control mice vs. 49 +/- 5% of total PKC beta II in hypertrophied mice), without compensatory changes of the other eight PKC isoforms present in the mouse heart. This enhanced PKC beta II activation is coupled with increased RACK1 expression and PKC beta II-RACK1 interactions, demonstrating PKC epsilon-induced PKC beta II signaling via a RACK1-dependent mechanism. Taken together with our previous findings regarding enhanced RACK1 expression and PKC epsilon-RACK1 interactions in the setting of cardiac hypertrophy and failure, these results suggest that RACK1 serves as a nexus for at least two isoforms of PKC, the epsilon-isoform and the beta II-isoform, thus coordinating PKC-mediated hypertrophic signaling.
机译:最近的研究已经确定了蛋白激酶C的βII异构体(PKC beta II)在诱导心肌肥大和衰竭中的作用。尽管已显示活化C激酶(RACK)的受体指导PKC信号转导,但选择性PKC beta II RACK RACK1参与PKC beta II介导的心脏肥大和失败的机制仍不确定。我们以前曾报道过PKCε激活可调节RACK的表达,而改变PKC的ε-异构体(PKCε)-RACK相互作用可促进小鼠心脏表型的发生。在这里,我们提供的证据表明,高水平的PKCε活性与受损的左心室功能(对照中的dP / dt = 6,074 +/- 248 mmHg / s相对于转基因的3,784 +/- 269 mmHg / s)和明显的心肌病相当肥大。更重要的是,我们证明了高水平的PKCε激活会诱导PKC beta II与RACK1发生明显的共定位(对照组的154 +/- 7%),并且PKC beta II明显重新分布到颗粒部分(17 +/- 2)。对照组小鼠中总PKC beta II的百分比为30%,而肥大小鼠中总PKC beta II的百分比为49 +/- 5%),而小鼠心脏中存在的其他八种PKC同工型却没有补偿性变化。这种增强的PKC beta II激活与增加的RACK1表达和PKC beta II-RACK1相互作用相结合,证明了PKC epsilon诱导的PKC beta II信号通过RACK1依赖性机制产生。结合我们先前关于在心脏肥大和衰竭的情况下增强RACK1表达和PKC epsilon-RACK1相互作用的发现,这些结果表明RACK1充当PKC的至少两种亚型的关系,即ε-亚型和beta II -异构体,从而协调PKC介导的肥大信号。

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