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经典Wnt信号通路在第二心脏区域发挥作用,以促进右心室生长。

Canonical Wnt signaling functions in second heart field to promote right ventricular growth.

作者信息

Ai Di, Fu Xueyao, Wang Jun, Lu Mei-Fang, Chen Li, Baldini Antonio, Klein William H, Martin James F

机构信息

Institute of Biosciences and Technology, Texas A&M System Health Science Center, 2121 Holcombe Boulevard, Houston, TX 77030, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 May 29;104(22):9319-24. doi: 10.1073/pnas.0701212104. Epub 2007 May 22.

Abstract

The second heart field (SHF), progenitor cells that are initially sequestered outside the heart, migrates into the heart and gives rise to endocardium, myocardium, and smooth muscle. Because of its distinct developmental history, the SHF is likely subjected to different signals from that of the first heart field. Previous experiments revealed that canonical Wnt signaling negatively regulated first heart field specification. We inactivated the obligate canonical Wnt effector beta-catenin using a beta-catenin conditional null allele and the Mef2c AHF cre driver that directs cre activity specifically in SHF. We also expressed a stabilized form of beta-catenin to model continuous Wnt signaling in SHF. Our data indicate that Wnt signaling acts in a positive fashion to promote right ventricular and interventricular myocardial expansion. Cyclin D2 and Tgfbeta2 expression was drastically reduced in beta-catenin loss-of-function mutants, indicating that Wnt signaling is required for patterning and expansion of SHF derivatives. Our findings reveal that Wnt signaling plays a major positive role in promoting growth and diversification of SHF precursors into right ventricular and interventricular myocardium.

摘要

第二心脏场(SHF)是最初隔离于心脏外的祖细胞,它迁移至心脏并分化为心内膜、心肌和平滑肌。由于其独特的发育历程,SHF可能受到与第一心脏场不同的信号调控。先前的实验表明,经典Wnt信号通路对第一心脏场的特化起负调控作用。我们利用β-连环蛋白条件性无效等位基因和Mef2c AHF cre驱动子(其可特异性地在SHF中指导cre活性)使必需的经典Wnt效应因子β-连环蛋白失活。我们还表达了一种稳定形式的β-连环蛋白,以模拟SHF中的持续Wnt信号。我们的数据表明,Wnt信号以正向方式促进右心室和室间隔心肌的扩张。在β-连环蛋白功能丧失突变体中,细胞周期蛋白D2和Tgfbeta2的表达大幅降低,这表明Wnt信号对于SHF衍生物的模式形成和扩张是必需的。我们的研究结果揭示,Wnt信号在促进SHF前体细胞生长并分化为右心室和室间隔心肌的过程中发挥着主要的正向作用。

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