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Cdon缺陷通过WNT/β-连环蛋白信号通路的过度激活导致心脏重塑。

Cdon deficiency causes cardiac remodeling through hyperactivation of WNT/β-catenin signaling.

作者信息

Jeong Myong-Ho, Kim Hyun-Ji, Pyun Jung-Hoon, Choi Kyu-Sil, Lee Dong I, Solhjoo Soroosh, O'Rourke Brian, Tomaselli Gordon F, Jeong Dong Seop, Cho Hana, Kang Jong-Sun

机构信息

Department of Molecular Cell Biology, Sungkyunkwan University School of Medicine, Suwon, Korea 16419.

Samsung Biomedical Research Institute, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea 06351.

出版信息

Proc Natl Acad Sci U S A. 2017 Feb 21;114(8):E1345-E1354. doi: 10.1073/pnas.1615105114. Epub 2017 Feb 2.

Abstract

On pathological stress, Wnt signaling is reactivated and induces genes associated with cardiac remodeling and fibrosis. We have previously shown that a cell surface receptor Cdon (cell-adhesion associated, oncogene regulated) suppresses Wnt signaling to promote neuronal differentiation however its role in heart is unknown. Here, we demonstrate a critical role of Cdon in cardiac function and remodeling. Cdon is expressed and predominantly localized at intercalated disk in both mouse and human hearts. Cdon-deficient mice develop cardiac dysfunction including reduced ejection fraction and ECG abnormalities. hearts exhibit increased fibrosis and up-regulation of genes associated with cardiac remodeling and fibrosis. Electrical remodeling was demonstrated by up-regulation and mislocalization of the gap junction protein, Connexin 43 (Cx43) in hearts. In agreement with altered Cx43 expression, functional analysis both using cardiomyocytes and shRNA-mediated knockdown in rat cardiomyocytes shows aberrant gap junction activities. Analysis of the underlying mechanism reveals that hearts exhibit hyperactive Wnt signaling as evident by β-catenin accumulation and Axin2 up-regulation. On the other hand, the treatment of rat cardiomyocytes with a Wnt activator TWS119 reduces Cdon levels and aberrant Cx43 activities, similarly to Cdon-deficient cardiomyocytes, suggesting a negative feedback between Cdon and Wnt signaling. Finally, inhibition of Wnt/β-catenin signaling by XAV939, IWP2 or dickkopf (DKK)1 prevented Cdon depletion-induced up-regulation of collagen 1a and Cx43. Taken together, these results demonstrate that Cdon deficiency causes hyperactive Wnt signaling leading to aberrant intercellular coupling and cardiac fibrosis. Cdon exhibits great potential as a target for the treatment of cardiac fibrosis and cardiomyopathy.

摘要

在病理性应激状态下,Wnt信号通路被重新激活,并诱导与心脏重塑和纤维化相关的基因表达。我们之前已经表明,细胞表面受体Cdon(细胞粘附相关、癌基因调控)可抑制Wnt信号通路以促进神经元分化,但其在心脏中的作用尚不清楚。在此,我们证明了Cdon在心脏功能和重塑中起关键作用。Cdon在小鼠和人类心脏中均有表达,且主要定位于闰盘。Cdon基因缺陷的小鼠会出现心脏功能障碍,包括射血分数降低和心电图异常。心脏表现出纤维化增加以及与心脏重塑和纤维化相关基因的上调。通过缝隙连接蛋白Connexin 43(Cx43)在心脏中的上调和定位错误证明了电重塑。与Cx43表达改变一致,使用心肌细胞以及在大鼠心肌细胞中通过短发夹RNA介导的敲低进行的功能分析均显示缝隙连接活动异常。对潜在机制的分析表明,心脏表现出Wnt信号通路过度活跃,这可通过β-连环蛋白积累和Axin2上调得以证明。另一方面,用Wnt激活剂TWS119处理大鼠心肌细胞会降低Cdon水平和异常的Cx43活性,这与Cdon基因缺陷的心肌细胞类似,提示Cdon与Wnt信号通路之间存在负反馈。最后,用XAV939、IWP2或dickkopf(DKK)1抑制Wnt/β-连环蛋白信号通路可防止Cdon缺失诱导的胶原蛋白1a和Cx43上调。综上所述,这些结果表明Cdon缺陷会导致Wnt信号通路过度活跃,从而导致异常的细胞间偶联和心脏纤维化。Cdon作为治疗心脏纤维化和心肌病的靶点具有巨大潜力。

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