首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Transcription factor CHF1/Hey2 regulates EC coupling and heart failure in mice through regulation of FKBP12.6
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Transcription factor CHF1/Hey2 regulates EC coupling and heart failure in mice through regulation of FKBP12.6

机译:转录因子CHF1 / Hey2通过调节FKBP12.6调节小鼠EC偶联和心力衰竭

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摘要

Heart failure is a leading cause of morbidity and mortality in Western society. The cardiovascular transcription factor CHF1/Hey2 has been linked to experimental heart failure in mice, but the mechanisms by which it regulates myocardial function remain incompletely understood. The objective of this study was to determine how CHF1/Hey2 affects development of heart failure through examination of contractility in a myocardial knockout mouse model. We generated myocardial-specific knockout mice. At baseline, cardiac function was normal, but, after aortic banding, the conditional knockout mice demonstrated a greater increase in ventricular weight-to-body weight ratio compared with control mice (5.526 vs. 4.664 mg/g) and a significantly decreased ejection fraction (47.8 vs. 72.0% control). Isolated cardiac myocytes from these mice showed decreased calcium transients and fractional shortening after electrical stimulation. To determine the molecular basis for these alterations in excitation-contraction coupling, we first measured total sarcoplasmic reticulum calcium stores and calcium-dependent force generation in isolated muscle fibers, which were normal, suggesting a defect in calcium cycling. Analysis of gene expression demonstrated normal expression of most genes known to be involved in myocardial calcium cycling, with the exception of the ryanodine receptor binding protein FKBP12.6, which was expressed at increased levels in the conditional knockout hearts. Treatment of the isolated knockout myocytes with FK506, which inhibits the association of FKBP12.6 with the ryanodine receptor, restored contractile function. These findings demonstrate that conditional deletion of CHF1/Hey2 in the myocardium leads to abnormalities in calcium handling mediated by FKBP12.6 that predispose to pressure overload-induced heart failure.
机译:心力衰竭是西方社会发病率和死亡率的主要原因。心血管转录因子CHF1 / Hey2与小鼠实验性心力衰竭有关,但尚不清楚其调节心肌功能的机制。这项研究的目的是通过检查心肌敲除小鼠模型中的收缩力来确定CHF1 / Hey2如何影响心力衰竭的发展。我们生成了心肌特异性基因敲除小鼠。在基线时,心脏功能正常,但是在主动脉绑扎后,条件性基因敲除小鼠与对照小鼠相比,其心室体重与体重的比例增加了更多(5.526 vs. 4.664 mg / g),并且射血分数明显降低(47.8 vs. 72.0%的对照)。从这些小鼠中分离出的心肌细胞在电刺激后显示出钙瞬变减少和分数缩短。为了确定激发-收缩偶联中这些改变的分子基础,我们首先测量了正常的孤立肌纤维中的总肌浆网钙存储和钙依赖性力生成,这提示钙循环存在缺陷。基因表达分析表明,已知与心肌钙循环有关的大多数基因均能正常表达,但ryanodine受体结合蛋白FKBP12.6除外,后者在条件性基因敲除心脏中以较高的水平表达。用FK506处理分离的敲除心肌细胞,抑制了FKBP12.6与ryanodine受体的结合,恢复了收缩功能。这些发现表明,心肌中CHF1 / Hey2的条件性缺失会导致由FKBP12.6介导的钙处理异常,从而导致压力超负荷诱发的心力衰竭。

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