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桩蛋白和粘着斑激酶(FAK)调节斑马鱼心脏的心肌收缩力。

Paxillin and Focal Adhesion Kinase (FAK) Regulate Cardiac Contractility in the Zebrafish Heart.

作者信息

Hirth Sofia, Bühler Anja, Bührdel John B, Rudeck Steven, Dahme Tillman, Rottbauer Wolfgang, Just Steffen

机构信息

Molecular Cardiology, University of Ulm, Ulm, Germany.

Department of Medicine II, University of Ulm, Ulm, Germany.

出版信息

PLoS One. 2016 Mar 8;11(3):e0150323. doi: 10.1371/journal.pone.0150323. eCollection 2016.

Abstract

An orchestrated interplay of adaptor and signaling proteins at mechano-sensitive sites is essential to maintain cardiac contractility and when defective leads to heart failure. We recently showed that Integrin-linked Kinase (ILK), ß-Parvin and PINCH form the IPP-complex to grant tuned Protein Kinase B (PKB) signaling in the heart. Loss of one of the IPP-complex components results in destabilization of the whole complex, defective PKB signaling and finally heart failure. Two components of IPP, ILK and ß-Parvin directly bind to Paxillin; however, the impact of this direct interaction on the maintenance of heart function is not known yet. Here, we show that targeted gene inactivation of Paxillin results in progressive decrease of cardiac contractility and heart failure in zebrafish without affecting IPP-complex stability and PKB phosphorylation. However, we found that Paxillin deficiency leads to the destabilization of its known binding partner Focal Adhesion Kinase (FAK) and vice versa resulting in degradation of Vinculin and thereby heart failure. Our findings highlight an essential role of Paxillin and FAK in controlling cardiac contractility via the recruitment of Vinculin to mechano-sensitive sites in cardiomyocytes.

摘要

衔接蛋白和信号蛋白在机械敏感位点的协同作用对于维持心脏收缩力至关重要,若出现缺陷则会导致心力衰竭。我们最近发现,整合素连接激酶(ILK)、β-帕文蛋白和PINCH形成IPP复合物,以调节心脏中蛋白激酶B(PKB)的信号传导。IPP复合物的任何一个组分缺失都会导致整个复合物不稳定、PKB信号传导缺陷,最终引发心力衰竭。IPP的两个组分,即ILK和β-帕文蛋白直接与桩蛋白结合;然而,这种直接相互作用对心脏功能维持的影响尚不清楚。在此,我们表明,在斑马鱼中靶向敲除桩蛋白基因会导致心脏收缩力逐渐下降并引发心力衰竭,而不影响IPP复合物的稳定性和PKB磷酸化。然而,我们发现桩蛋白缺乏会导致其已知结合伴侣粘着斑激酶(FAK)不稳定,反之亦然,从而导致纽蛋白降解,进而引发心力衰竭。我们的研究结果突出了桩蛋白和FAK在通过将纽蛋白募集到心肌细胞的机械敏感位点来控制心脏收缩力方面的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af20/4782988/99127dbc4ddc/pone.0150323.g001.jpg

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