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首页> 外文期刊>OMICS: A journal of integrative biology >CHF1/Hey2 Promotes Physiological Hypertrophy in Response to Pressure Overload through Selective Repression and Activation of Specific Transcriptional Pathways
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CHF1/Hey2 Promotes Physiological Hypertrophy in Response to Pressure Overload through Selective Repression and Activation of Specific Transcriptional Pathways

机译:CHF1 / Hey2促进生理肥大通过选择性反应压力过载镇压和激活特定的转录途径

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We have previously found that CHF1/Hey2 prevents the development of phenylephrine-induced cardiac hypertrophy. To determine the role of CHF1/Hey2 in pressure overload hypertrophy, we performed ascending aortic banding on wild-type and transgenic mice overexpressing CHF1/Hey2 in the myocardium. We found that both wild-type and transgenic mice developed increased ventricular weight to body weight ratios 1 week after aortic banding. Wild-type mice also developed decreased fractional shortening after 1 week when compared to preoperative echocardiograms and sham-operated controls. Transgenic mice, in comparison, demonstrated preserved fractional shortening. Histological examination of explanted heart tissue demonstrated extensive fibrosis in wild-type hearts, but minimal fibrosis in transgenic hearts. TUNEL staining demonstrated increased apoptosis in the wild-type hearts but not in the transgenic hearts. Exposure of cultured neonatal myocytes from wild-type and transgenic animals to hydrogen peroxide, a potent inducer of apoptosis, demonstrated increased apoptosis in the wild-type cells. Gene Set Analysis of microarray data from wild-type and transgenic hearts 1 week after banding revealed suppression and activation of multiple pathways involving apoptosis, cell signaling, and biosynthesis. These findings demonstrate that CHF1/Hey2 promotes physiological over pathological hypertrophy through suppression of apoptosis and regulation of multiple transcriptional pathways. These findings also suggest that CHF1/Hey2 and its downstream pathways provide a variety of targets for novel heart failure drug discovery, and that genetic polymorphisms in CHF1/Hey2 may affect susceptibility to hypertrophy and heart failure.
机译:我们曾发现CHF1 / Hey2阻止phenylephrine-induced心脏的发展肥大。在压力超负荷肥大,我们执行升主动脉在野生型和条带转基因小鼠overexpressing CHF1 / Hey2心肌。转基因小鼠开发增加心室体重体重比率主动脉后1周条带。部分缩短后1周相比术前超声心动图和sham-operated控制。保留部分缩短。组织学检查心脏移植组织展示了广泛的纤维化野生型的心,但最小的纤维化转基因的心。增加细胞凋亡在野生型的心不是转基因的心。培养新生儿从野生型细胞转基因动物过氧化氢,有力诱导细胞凋亡,表明增加细胞凋亡在野生型细胞。从野生型和微阵列数据的分析转基因的心条带显示后1周多途径的抑制和激活包括细胞凋亡、细胞信号,生物合成。CHF1 / Hey2促进生理通过抑制病理性肥大细胞凋亡和监管的多重转录途径。表明CHF1 / Hey2及其下游途径为小说提供各种各样的目标心力衰竭药物发现,遗传多态性在CHF1 / Hey2可能影响易感性肥厚和心力衰竭。

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