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Transcription factor CHF1/Hey2 suppresses cardiac hypertrophy through an inhibitory interaction with GATA4

机译:转录因子CHF1 / Hey2通过与GATA4的抑制性相互作用抑制心脏肥大

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摘要

Pathological cardiac hypertrophy is considered a precursor to clinical heart failure. Understanding the transcriptional regulators that suppress the hypertrophic response may have profound implications for the treatment of heart disease. We report the generation of transgenic mice that overexpress the transcription factor CHF1/Hey2 in the myocardium. In response to the α-adrenergic agonist phenylephrine, they show marked attenuation in the hypertrophic response compared with wild-type controls, even though blood pressure is similar in both groups. Isolated myocytes from transgenic mice demonstrate a similar resistance to phenylephrine-induced hypertrophy in vitro, providing further evidence that the protective effect of CHF1/Hey2 is mediated at the myocyte level. Induction of the hypertrophy marker genes ANF, BNP, and β-MHC in the transgenic cells is concurrently suppressed in vivo and in vitro, demonstrating that the induction of hypertrophy-associated genes is repressed by CHF1/Hey2. Transfection of CHF1/Hey2 into neonatal cardiomyocytes suppresses activation of an ANF reporter plasmid by the transcription factor GATA4, which has previously been shown to activate a hypertrophic transcriptional program. Furthermore, CHF1/Hey2 binds GATA4 directly in coimmunoprecipitation assays and inhibits the binding of GATA4 to its recognition sequence within the ANF promoter. Our findings demonstrate that CHF1/Hey2 functions as an antihypertrophic gene, possibly through inhibition of a GATA4-dependent hypertrophic program.
机译:病理性心脏肥大被认为是临床心力衰竭的先兆。了解抑制肥大反应的转录调节因子可能对心脏病的治疗具有深远的意义。我们报告了过表达心肌中转录因子CHF1 / Hey2的转基因小鼠的一代。对α-肾上腺素能激动剂去氧肾上腺素的反应,与野生型对照相比,它们在肥大性反应中显示出明显的减弱,即使两组的血压相似。从转基因小鼠中分离出的心肌细胞在体外对苯肾上腺素诱导的肥大表现出相似的抗性,提供了进一步的证据证明CHF1 / Hey2的保护作用是在心肌细胞水平上介导的。在体内和体外同时抑制转基因细胞中肥大标志物基因ANF,BNP和β-MHC的诱导,表明肥大相关基因的诱导被CHF1 / Hey2抑制。将CHF1 / Hey2转染到新生儿心肌细胞中可抑制转录因子GATA4激活ANF报告质粒,该转录因子先前已显示可激活肥大性转录程序。此外,CHF1 / Hey2在免疫共沉淀试验中直接结合GATA4,并抑制GATA4与其在ANF启动子中的识别序列的结合。我们的发现表明,CHF1 / Hey2可以作为抗肥大基因的功能,可能是通过抑制GATA4依赖性肥大程序实现的。

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