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原癌基因c-myc在心脏中的特异性抑制可减轻寒冷诱导的心脏肥大。

Heart-specific inhibition of protooncogene c-myc attenuates cold-induced cardiac hypertrophy.

作者信息

Bello Roufai M, Li H, Sun Z

机构信息

Department of Physiology, College of Medicine, University of Oklahoma Health Science Center, Oklahoma City, OK 73190, USA.

出版信息

Gene Ther. 2007 Oct;14(19):1406-16. doi: 10.1038/sj.gt.3302995. Epub 2007 Jul 19.

Abstract

The protooncogene c-myc is involved in the regulation of cell growth. Although increased c-Myc expression is found in hypertrophied hearts, the role of c-Myc in the development of cardiac hypertrophy (CH) has never been determined. The aim of this study was to test the effect of heart-specific inhibition of c-Myc expression on the development of cold-induced cardiac hypertrophy (CICH). We hypothesized that heart-specific inhibition of c-Myc expression attenuates CICH. We constructed c-Myc antisense (c-MycAS) plasmid and green fluorescent protein (GFP) plasmid driven by a heart-specific promoter, alpha-myosin heavy chain (MHC). The cell culture study indicated that c-MycAS can effectively inhibit c-Myc expression and that GFP can express in the rat heart cells. Four groups of rats were used to test the effect of in vivo inhibition of cardiac c-Myc expression on the development of CICH. Three groups received an intravenous injection of c-MycAS, GFP and buffer, respectively, at the beginning of exposure to moderate cold (6.7 degrees C), while the last group received buffer and was kept at room temperature (25 degrees C) to serve as a control. Blood pressure (BP) of the cold-exposed groups receiving buffer or GFP increased significantly, whereas BP of the c-MycAS group did not increase until 28 days after exposure to cold. Thus, c-MycAS delayed and attenuated cold-induced hypertension (CIH). The antihypertensive effect of c-MycAS was probably due to the decreased cardiac output. Magnetic resonance imaging (MRI) showed that the in vivo left ventricle wall thickness of cold-exposed rats was decreased significantly by c-MycAS. Consistently, the cold-induced increase in heart weight was attenuated by inhibition of cardiac c-Myc expression. The heart specificity of alpha-MHC promoter was confirmed by the selective inhibition of c-Myc expression in the heart and by the selective expression of both GFP mRNA and GFP protein in the heart. Heart-specific inhibition of c-Myc expression attenuated the development of CICH. The increased c-Myc expression may play a critical role in the pathogenesis of CICH. Thus, heart-specific inhibition of c-Myc expression may be a new and effective approach for the control of CH.

摘要

原癌基因c-myc参与细胞生长的调控。虽然在肥厚心脏中发现c-Myc表达增加,但c-Myc在心脏肥大(CH)发生发展中的作用尚未明确。本研究旨在测试心脏特异性抑制c-Myc表达对冷诱导心脏肥大(CICH)发生发展的影响。我们假设心脏特异性抑制c-Myc表达可减轻CICH。我们构建了由心脏特异性启动子α-肌球蛋白重链(MHC)驱动的c-Myc反义(c-MycAS)质粒和绿色荧光蛋白(GFP)质粒。细胞培养研究表明,c-MycAS可有效抑制c-Myc表达,且GFP可在大鼠心脏细胞中表达。四组大鼠用于测试体内抑制心脏c-Myc表达对CICH发生发展的影响。三组大鼠在开始暴露于中度寒冷(6.7℃)时分别静脉注射c-MycAS、GFP和缓冲液,而最后一组大鼠注射缓冲液并置于室温(25℃)作为对照。接受缓冲液或GFP的冷暴露组大鼠血压显著升高,而c-MycAS组大鼠血压直到暴露于寒冷28天后才升高。因此,c-MycAS延缓并减轻了冷诱导高血压(CIH)。c-MycAS的降压作用可能归因于心输出量降低。磁共振成像(MRI)显示,c-MycAS可显著降低冷暴露大鼠的体内左心室壁厚度。同样,抑制心脏c-Myc表达可减轻冷诱导的心脏重量增加。α-MHC启动子的心脏特异性通过心脏中c-Myc表达的选择性抑制以及心脏中GFP mRNA和GFP蛋白的选择性表达得以证实。心脏特异性抑制c-Myc表达可减轻CICH的发生发展。c-Myc表达增加可能在CICH的发病机制中起关键作用。因此,心脏特异性抑制c-Myc表达可能是控制CH的一种新的有效方法。

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