Piven Oksana O, Winata Cecilia L
1 Institute of Molecular Biology and Genetic, Kyiv 0314, Ukraine.
2 49595 International Institute of Molecular and Cell Biology , 02-109 Warsaw, Poland.
Exp Biol Med (Maywood). 2017 Dec;242(18):1735-1745. doi: 10.1177/1535370217732737. Epub 2017 Sep 18.
The main mediator of the canonical Wnt pathway, β-catenin, is a major effector of embryonic development, postnatal tissue homeostasis, and adult tissue regeneration. The requirement for β-catenin in cardiogenesis and embryogenesis has been well established. However, many questions regarding the molecular mechanisms by which β-catenin and canonical Wnt signaling regulate these developmental processes remain unanswered. An interesting question that emerged from our studies concerns how β-catenin signaling is modulated through interaction with other factors. Recent experimental data implicate new players in canonical Wnt signaling, particularly those which modulate β-catenin function in many its biological processes, including cardiogenesis. One of the interesting candidates is plakoglobin, a little-studied member of the catenin family which shares several mechanistic and functional features with its close relative, β-catenin. Here we have focused on the function of β-catenin in cardiogenesis. We also summarize findings on plakoglobin signaling function and discuss possible interplays between β-catenin and plakoglobin in the regulation of embryonic heart development. Impact statement Heart development, function, and remodeling are complex processes orchestrated by multiple signaling networks. This review examines our current knowledge of the role of canonical Wnt signaling in cardiogenesis and heart remodeling, focusing primarily on the mechanistic action of its effector β-catenin. We summarize the generally accepted understanding of the field based on experimental in vitro and in vivo data, and address unresolved questions in the field, specifically relating to the role of canonical Wnt signaling in heart maturation and regeneration. What are the modulators of canonical Wnt, and particularly what are the potential roles of plakoglobin, a close relative of β-catenin, in regulating Wnt signaling?Answers to these questions will enhance our understanding of the mechanism by which the canonical Wnt signaling regulates development of the heart and its regeneration after damage.
经典Wnt信号通路的主要介导因子β-连环蛋白,是胚胎发育、出生后组织稳态及成体组织再生的主要效应分子。β-连环蛋白在心脏发生和胚胎发育中的需求已得到充分证实。然而,关于β-连环蛋白和经典Wnt信号传导调控这些发育过程的分子机制,仍有许多问题未得到解答。我们的研究中出现的一个有趣问题是,β-连环蛋白信号如何通过与其他因子相互作用来调节。最近的实验数据表明,经典Wnt信号中有新的参与者,特别是那些在包括心脏发生在内的许多生物学过程中调节β-连环蛋白功能的因子。其中一个有趣的候选因子是原钙黏蛋白,它是连环蛋白家族中研究较少的成员,与其近亲β-连环蛋白具有一些机制和功能特征。在这里,我们重点关注β-连环蛋白在心脏发生中的功能。我们还总结了原钙黏蛋白信号功能的研究结果,并讨论了β-连环蛋白和原钙黏蛋白在胚胎心脏发育调控中可能的相互作用。影响声明心脏发育、功能和重塑是由多个信号网络协调的复杂过程。本综述探讨了我们目前对经典Wnt信号在心脏发生和心脏重塑中作用的认识,主要关注其效应分子β-连环蛋白的机制作用。我们根据体外和体内实验数据总结了该领域普遍接受的认识,并解决了该领域未解决的问题,特别是与经典Wnt信号在心脏成熟和再生中的作用相关的问题。经典Wnt的调节因子是什么,特别是β-连环蛋白的近亲原钙黏蛋白在调节Wnt信号中的潜在作用是什么?这些问题的答案将增进我们对经典Wnt信号调节心脏发育及其损伤后再生机制的理解。