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首页> 外文期刊>Circulation research: a journal of the American Heart Association >The transcription factor GATA-6 regulates pathological cardiac hypertrophy.
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The transcription factor GATA-6 regulates pathological cardiac hypertrophy.

机译:转录因子GATA-6调节病理性心脏肥大。

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摘要

RATIONALE: The transcriptional code that programs maladaptive cardiac hypertrophy involves the zinc finger-containing DNA binding factor GATA-4. The highly related transcription factor GATA-6 is also expressed in the adult heart, although its role in controlling the hypertrophic program is unknown. OBJECTIVE: To determine the role of GATA-6 in cardiac hypertrophy and homeostasis. METHODS AND RESULTS: Here, we performed a cardiomyocyte-specific conditional gene targeting approach for Gata6, as well as a transgenic approach to overexpress GATA-6 in the mouse heart. Deletion of Gata6-loxP with Nkx2.5-cre produced late embryonic lethality with heart defects, whereas deletion with beta-myosin heavy chain-cre (betaMHC-cre) produced viable adults with >95% loss of GATA-6 protein in the heart. These latter mice were subjected to pressure overload-induced hypertrophy for 2 and 6 weeks, which showed a significant reduction in cardiac hypertrophy similar to that observed Gata4 heart-specific deleted mice. Gata6-deleted mice subjected to pressure overload also developed heart failure, whereas control mice maintained proper cardiac function. Gata6-deleted mice also developed less cardiac hypertrophy following 2 weeks of angiotensin II/phenylephrine infusion. Controlled GATA-6 overexpression in the heart induced hypertrophy with aging and predisposed to greater hypertrophy with pressure overload stimulation. Combinatorial deletion of Gata4 and Gata6 from the adult heart resulted in dilated cardiomyopathy and lethality by 16 weeks of age. Mechanistically, deletion of Gata6 from the heart resulted in fundamental changes in the levels of key regulatory genes and myocyte differentiation-specific genes. CONCLUSIONS: These results indicate that GATA-6 is both necessary and sufficient for regulating the cardiac hypertrophic response and differentiated gene expression, both alone and in coordination with GATA-4.
机译:理由:编程性适应不良的心肌肥大的转录编码涉及含锌指的DNA结合因子GATA-4。高度相关的转录因子GATA-6也表达在成年心脏中,尽管它在控制肥大程序中的作用尚不清楚。目的:确定GATA-6在心脏肥大和体内平衡中的作用。方法和结果:在这里,我们对Gata6进行了心肌细胞特异性条件基因靶向方法,以及在小鼠心脏中过表达GATA-6的转基因方法。用Nkx2.5-cre删除Gata6-loxP会产生具有心脏缺陷的晚期胚胎致死率,而用β-肌球蛋白重链cre(betaMHC-cre)删除会产生存活的成年人,心脏中GATA-6蛋白损失> 95% 。后者对这些小鼠进行了2到6周的压力超负荷诱导的肥大,显示出与观察到的Gata4心脏特异性缺失小鼠相似的心脏肥大的显着减少。遭受压力超负荷的Gata6缺失小鼠也发展为心力衰竭,而对照小鼠则维持适当的心脏功能。输注2周血管紧张素II /去氧肾上腺素后,Gata6缺失的小鼠的心脏肥大也较少。心脏中受控的GATA-6过表达随着年龄的增长而诱发肥大,并在压力超负荷刺激下倾向于更大的肥大。从成年心脏中组合删除Gata4和Gata6会导致扩张的心肌病和致死性,直到16周龄。从机械上讲,心脏中Gata6的缺失导致关键调控基因和心肌细胞分化特异性基因水平的根本变化。结论:这些结果表明,单独或与GATA-4配合使用,GATA-6对调节心脏肥大反应和分化的基因表达既必要又充分。

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