The Heart Institute, Cincinnati Children's Medical Center, Cincinnati, OH 45229, USA.
Dev Biol. 2012 Mar 1;363(1):234-46. doi: 10.1016/j.ydbio.2011.12.034. Epub 2011 Dec 29.
TBX20 gain-of-function mutations in humans are associated with congenital heart malformations and myocardial defects. However the effects of increased Tbx20 function during cardiac chamber development and maturation have not been reported previously. CAG-CAT-Tbx20 transgenic mice were generated for Cre-dependent induction of Tbx20 in myocardial lineages in the developing heart. βMHCCre-mediated overexpression of Tbx20 in fetal ventricular cardiomyocytes results in increased thickness of compact myocardium, induction of cardiomyocyte proliferation, and increased expression of Bmp10 and pSmad1/5/8 at embryonic day (E) 14.5. βMHCCre-mediated Tbx20 overexpression also leads to increased expression of cardiac conduction system (CCS) genes Tbx5, Cx40, and Cx43 throughout the ventricular myocardium. In contrast, Nkx2.5Cre mediated overexpression of Tbx20 in the embryonic heart results in reduced cardiomyocyte proliferation, increased expression of a cell cycle inhibitor, p21(CIP1), and decreased expression of Tbx2, Tbx5, and N-myc1 at E9.5, concomitant with decreased phospho-ERK1/2 expression. Together, these analyses demonstrate that Tbx20 differentially regulates cell proliferation and cardiac lineage specification in embryonic versus fetal cardiomyocytes. Induction of pSmad1/5/8 at E14.5 and inhibition of dpERK expression at E9.5 are consistent with selective Tbx20 regulation of these pathways in association with stage-specific effects on cardiomyocyte proliferation. Together, these in vivo data support distinct functions for Tbx20 in regulation of cardiomyocyte lineage maturation and cell proliferation at embryonic and fetal stages of heart development.
人类 TBX20 功能获得性突变与先天性心脏畸形和心肌缺陷有关。然而,在心脏腔室发育和成熟过程中增加 Tbx20 功能的影响以前尚未报道过。为了在发育中心肌谱系中依赖 Cre 诱导 Tbx20,生成了 CAG-CAT-Tbx20 转基因小鼠。βMHCCre 介导的胎儿心室心肌细胞中 Tbx20 的过表达导致致密心肌层厚度增加、诱导心肌细胞增殖以及在胚胎第 14.5 天(E)增加 Bmp10 和 pSmad1/5/8 的表达。βMHCCre 介导的 Tbx20 过表达还导致整个心室心肌中心脏传导系统(CCS)基因 Tbx5、Cx40 和 Cx43 的表达增加。相比之下,Nkx2.5Cre 在胚胎心脏中过表达 Tbx20 导致心肌细胞增殖减少、细胞周期抑制剂 p21(CIP1)表达增加以及 E9.5 时 Tbx2、Tbx5 和 N-myc1 表达减少,同时伴有磷酸化 ERK1/2 表达减少。总之,这些分析表明 Tbx20 在胚胎和成人心肌细胞中差异调节细胞增殖和心脏谱系特化。E14.5 时 pSmad1/5/8 的诱导和 E9.5 时 dpERK 表达的抑制与 Tbx20 对这些途径的选择性调节一致,与心肌细胞增殖的阶段特异性效应相关。总之,这些体内数据支持 Tbx20 在胚胎和胎儿心脏发育阶段调节心肌细胞谱系成熟和细胞增殖方面的不同功能。