首页> 外文期刊>Vascular pharmacology >Targeted inhibition of phosphoinositide 3-kinase activity as a novel strategy to normalize beta-adrenergic receptor function in heart failure.
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Targeted inhibition of phosphoinositide 3-kinase activity as a novel strategy to normalize beta-adrenergic receptor function in heart failure.

机译:有针对性的抑制磷酸肌醇3-激酶活性,作为在心力衰竭中使β-肾上腺素能受体功能正常化的新策略。

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摘要

Human heart failure is a complex clinical syndrome characterized by extensive abnormalities in the beta-adrenergic receptor (betaAR) system. Normalization of betaAR signalling consistently ameliorates cardiac dysfunction and survival in heart failure, suggesting that betaAR dysfunction may be intrinsically linked to the deterioration of cardiac performance. Agonist-dependent phosphorylation of betaARs by betaAR kinase 1 (betaARK1) initiates the processes of desensitization and downregulation, hallmarks of heart failure. Our recent studies have shown that betaARK1 forms a cytosolic complex with phosphoinositide 3-kinase (PI3K) and that translocation of betaARK1 to the plasma membrane also promotes the betaAR-targeting of PI3Ks. At the plasma membrane, the generation of 3'-phosphorylated phosphatidylinositols by PI3K is required in the process of endocytosis, a prodrome to receptor downregulation. A large body of data now indicates that betaAR-targeting of PI3Ks is consistently associated with abnormalities of betaAR signalling under pathological conditions, including pressure-overload hypertrophy and heart failure from different causes. In this review we will discuss the role of betaAR-targeted PI3K activity and novel experimental strategies to disrupt the betaARK1/PI3K complex and in turn ameliorate betaAR dysfunction and the progression of heart failure.
机译:人心力衰竭是一种复杂的临床综合征,其特征在于β-肾上腺素受体(betaAR)系统广泛异常。 betaAR信号转导的正常化可以持续改善心脏功能障碍和心力衰竭的存活率,这表明betaAR功能障碍可能与心脏功能的恶化有内在联系。 betaAR激动剂依赖性betaAR激酶1(betaARK1)的磷酸化引发脱敏和下调过程,这是心力衰竭的标志。我们最近的研究表明,betaARK1与磷酸肌醇3激酶(PI3K)形成胞质复合物,并且betaARK1向质膜的移位也促进了PI3K的betaAR靶向。在质膜上,在胞吞作用(受体下调的产物)的过程中,需要通过PI3K生成3'-磷酸化磷脂酰肌醇。现在有大量数据表明,针对PI3K的betaAR靶向与病理条件下betaAR信号传导异常相关,包括压力超负荷肥大和不同原因引起的心力衰竭。在这篇综述中,我们将讨论靶向βAR的PI3K活性的作用以及打破βARK1/ PI3K复合物从而改善βAR功能障碍和心力衰竭进展的新型实验策略。

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