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Opposing Roles of Wnt Inhibitors IGFBP-4 and Dkk1 in Cardiac Ischemia by Differential Targeting of LRP5/6 and β-catenin

  • Da Wo
  • , Jinhui Peng
  • , Dan Ni Ren
  • , Liman Qiu
  • , Jinxiao Chen
  • , Ye Zhu
  • , Yingjing Yan
  • , Hongwei Yan
  • , Jian Wu
  • , En Ma
  • , Tao P. Zhong
  • , Yihan Chen
  • , Zhongmin Liu
  • , Shangfeng Liu
  • , Luoquan Ao
  • , Zhenping Liu
  • , Cizhong Jiang
  • , Jun Peng
  • , Yunzeng Zou
  • , Qirong Qian
  • Weidong Zhu*
*此作品的通讯作者
  • Tongji University
  • Changzheng Hospital
  • Fujian University of Traditional Chinese Medicine
  • Fudan University

科研成果: 期刊稿件文章同行评审

摘要

Background: Myocardial infarction is one of the leading causes of morbidity and mortality worldwide, triggering irreversible myocardial cell damage and heart failure. The role of low-density lipoprotein receptor-related proteins 5 and 6 (LRP5/6) as coreceptors of the Wnt/β-catenin pathway in the adult heart remain unknown. Insulin-like growth factor binding protein 4 and dickkopf-related protein 1 (Dkk1) are 2 secreted LRP5/6 binding proteins that play a crucial role in heart development through preventing Wnt/β-catenin pathway activation. However, their roles in the adult heart remain unexplored. Methods: To understand the role of LRP5/6 and β-catenin in the adult heart, we constructed conditional cardiomyocyte-specific LRP5/6 and β-catenin knockout mice and induced surgical myocardial infarction. We also directly injected recombinant proteins of insulin-like growth factor binding protein 4 and Dkk1 into the heart immediately following myocardial infarction to further examine the mechanisms through which these proteins regulate LRP5/6 and β-catenin. Results: Deletion of LRP5/6 promoted cardiac ischemic insults. Conversely, deficiency of β-catenin, a downstream target of LRP5/6, was beneficial in ischemic injury. It is interesting to note that although both insulin-like growth factor binding protein 4 and Dkk1 are secreted Wnt/β-catenin pathway inhibitors, insulin-like growth factor binding protein 4 protected the ischemic heart by inhibiting β-catenin, whereas Dkk1 enhanced the injury response mainly through inducing LRP5/6 endocytosis and degradation. Conclusions: Our findings reveal previously unidentified dual roles of LRP5/6 involved in the cardiomyocyte response to ischemic injury. These findings suggest new therapeutic strategies in ischemic heart disease by fine-tuning LRP5/6 and β-catenin signaling within the Wnt/β-catenin pathway.

源语言英语
页(从-至)1991-2007
页数17
期刊Circulation
134
24
DOI
出版状态已出版 - 13 12月 2016
已对外发布

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