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β-连环蛋白在心脏中的单倍剂量不足可减轻心脏肥大,但在主动脉缩窄时会增强胎儿基因表达。

Cardiac-specific haploinsufficiency of beta-catenin attenuates cardiac hypertrophy but enhances fetal gene expression in response to aortic constriction.

作者信息

Qu Jiaxiang, Zhou Jibin, Yi Xian Ping, Dong Baojun, Zheng Hanqiao, Miller Lisa M, Wang Xuejun, Schneider Michael D, Li Faqian

机构信息

Sanford Research/USD, Cardiovascular Research Institute, Sanford School of Medicine of The University of South Dakota and Sanford Health, Sioux Falls, SD 57105, USA.

出版信息

J Mol Cell Cardiol. 2007 Sep;43(3):319-26. doi: 10.1016/j.yjmcc.2007.06.006. Epub 2007 Jun 21.

Abstract

In addition to its role in cell adhesion, beta-catenin is an important signaling molecule in the Wnt/Wingless signaling pathway. Recent studies have indicated that beta-catenin is stabilized by hypertrophic stimuli and may regulate cardiac hypertrophic responses. To explore the role and requirement of beta-catenin in cardiac development and hypertrophy, we deleted the beta-catenin gene specifically in cardiac myocytes by crossing loxP-floxed beta-catenin mice with transgenic mice expressing a Cre recombinase under the control of the alpha-myosin heavy chain promoter. No homozygous beta-catenin-deleted mice were born alive and died before embryonic day 14.5, indicating significant and irreplaceable roles of beta-catenin in embryonic heart development. Heterozygous beta-catenin-deleted mice, however, demonstrated no structural and functional abnormality. The response of heterozygous beta-catenin-deleted mice to transverse aortic constriction, however, was significantly attenuated with decreased heart weight and heart weight/body weight ratio compared to controls with intact beta-catenin genes. Hemodynamic analysis revealed that there was no difference in cardiac function between wild-type and heterozygous beta-catenin-deleted mice. On the other hand, the expression of fetal genes, beta-myosin heavy chain, atrial and brain natriuretic peptides was significantly higher in heterozygous beta-catenin-deleted mice when compared to wild-type beta-catenin mice. These results suggest that the cytoplasmic level of beta-catenin modulates hypertrophic response and fetal gene reprogramming after pressure overload.

摘要

除了在细胞黏附中发挥作用外,β-连环蛋白还是Wnt/Wingless信号通路中的重要信号分子。最近的研究表明,肥大刺激可使β-连环蛋白稳定,并可能调节心脏肥大反应。为了探究β-连环蛋白在心脏发育和肥大中的作用及需求,我们通过将loxP-侧翼β-连环蛋白小鼠与在α-肌球蛋白重链启动子控制下表达Cre重组酶的转基因小鼠杂交,特异性地删除了心肌细胞中的β-连环蛋白基因。没有纯合β-连环蛋白缺失的小鼠存活出生,且在胚胎第14.5天之前死亡,这表明β-连环蛋白在胚胎心脏发育中具有重要且不可替代的作用。然而,杂合β-连环蛋白缺失的小鼠未表现出结构和功能异常。然而,与β-连环蛋白基因完整的对照小鼠相比,杂合β-连环蛋白缺失的小鼠对主动脉缩窄的反应明显减弱,心脏重量和心脏重量/体重比降低。血流动力学分析显示,野生型和杂合β-连环蛋白缺失小鼠的心脏功能没有差异。另一方面,与野生型β-连环蛋白小鼠相比,杂合β-连环蛋白缺失小鼠中胎儿基因β-肌球蛋白重链、心房利钠肽和脑利钠肽的表达明显更高。这些结果表明,压力超负荷后,β-连环蛋白的细胞质水平调节肥大反应和胎儿基因重编程。

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