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Smad4在小鼠胚胎心脏发育过程中维持心肌细胞增殖的关键作用。

Essential role of Smad4 in maintaining cardiomyocyte proliferation during murine embryonic heart development.

作者信息

Qi Xin, Yang Guan, Yang Leilei, Lan Yu, Weng Tujun, Wang Jian, Wu Zhuang, Xu Jun, Gao Xiang, Yang Xiao

机构信息

State Key Laboratory of Proteomics, Genetic Laboratory of Development and Diseases, Beijing Institute of Biotechnology, 20 Dongdajie, Fengtai, Beijing 100071, PR China.

出版信息

Dev Biol. 2007 Nov 1;311(1):136-46. doi: 10.1016/j.ydbio.2007.08.022. Epub 2007 Aug 19.

Abstract

Transforming growth factor-beta/bone morphogenetic protein (TGF-beta/BMP) signaling pathway is essential for embryonic and postnatal heart development and remodeling. The intracellular factor Smad4 plays a pivotal role in mediating TGF-beta/BMP signal transduction in the nucleus. To examine the function of Smad4 in embryonic cardiac development during mid-gestation, we specifically deleted the Smad4 gene in embryonic cardiomyocytes using the Cre-LoxP system. Deletion of Smad4 as early as E9.5, led to embryonic lethality between E12.5 and E15.5, and embryos exhibited severe morphological defects in the heart, including a thin compact layer, disorganized trabeculae, and ventricular septum defects (VSD). Smad4 deletion also led to a dramatic decrease in cardiomyocyte proliferation accompanied by downregulation of contractile protein-encoding genes such as alpha-myosin heavy chain, beta-myosin heavy chain, ventricular myosin light chain 2, and alpha-cardiac actin. In addition, deletion of Smad4 resulted in perturbation of TGF-beta/BMP ligand expression and signaling, and defects in expression of several cardiac transcription factor genes such as Nkx2.5, GATA4, and MEF2c. These results provide direct genetic evidences that Smad4 is essential for regulating cardiomyocyte proliferation and differentiation during murine cardiogenesis, and provides new insights into potential causes of congenital heart disease.

摘要

转化生长因子-β/骨形态发生蛋白(TGF-β/BMP)信号通路对于胚胎期和出生后心脏的发育及重塑至关重要。细胞内因子Smad4在介导TGF-β/BMP信号转导至细胞核的过程中起关键作用。为了研究Smad4在妊娠中期胚胎心脏发育中的功能,我们使用Cre-LoxP系统在胚胎心肌细胞中特异性删除了Smad4基因。早在E9.5时删除Smad4,导致胚胎在E12.5至E15.5之间死亡,胚胎心脏表现出严重的形态学缺陷,包括致密层变薄、小梁紊乱和室间隔缺损(VSD)。Smad4的缺失还导致心肌细胞增殖显著减少,同时收缩蛋白编码基因如α-肌球蛋白重链、β-肌球蛋白重链、心室肌球蛋白轻链2和α-心肌肌动蛋白下调。此外,Smad4的缺失导致TGF-β/BMP配体表达和信号转导紊乱,以及几种心脏转录因子基因如Nkx2.5、GATA4和MEF2c表达缺陷。这些结果提供了直接的遗传学证据,表明Smad4对于调节小鼠心脏发生过程中心肌细胞的增殖和分化至关重要,并为先天性心脏病的潜在病因提供了新的见解。

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