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快速刺激的HL-1心房肌细胞的转录重塑与人类心房颤动表现出一致性。

Transcriptional remodeling of rapidly stimulated HL-1 atrial myocytes exhibits concordance with human atrial fibrillation.

作者信息

Mace Lisa C, Yermalitskaya Liudmila V, Yi Yajun, Yang Zhenjiang, Morgan Ashley M, Murray Katherine T

机构信息

Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232-6602, USA.

出版信息

J Mol Cell Cardiol. 2009 Oct;47(4):485-92. doi: 10.1016/j.yjmcc.2009.07.006. Epub 2009 Jul 15.

Abstract

During atrial fibrillation (AF), rapid stimulation causes atrial remodeling that increases arrhythmia susceptibility. Using an established atrial (HL-1) myocyte model, we investigated the transcriptional profile associated with early atrial myocyte remodeling. Spontaneously contracting HL-1 cells were cultured in the absence and presence of rapid stimulation for 24 h and RNA harvested for microarray analysis. We identified 758 genes that were significantly altered with rapid stimulation (626 up- and 132 down-regulated). Results were confirmed using real-time quantitative RT-PCR for selected genes based on physiological relevance in human AF and/or experimental atrial tachycardia (AT), and regulation in the microarray results. In some cases, transcriptional changes were rapid, occurring within 3 h. For a selected group of genes, results were validated for the expressed protein, with findings that correlated with observed transcriptional changes. Significantly regulated genes were classified using the Gene Ontology Database to permit direct comparison of our findings with previously published myocardial transcriptional profiles. For broad functional categories, there was strong concordance between rapidly stimulated HL-1 myocytes and human AF, but not for other remodeling paradigms (cardiomyopathy and exercise). Many individual gene changes were conserved with AF/AT, with marked up-regulation of genes encoding brain and atrial natriuretic peptide precursors, and heat shock proteins. For the conserved genes, both a cellular stress and survival response was evident. Our results demonstrate similarities with human AF/experimental AT with respect to large-scale patterns of transcriptional remodeling, as well as regulation of specific individual genes. Importantly, we identified novel pathways and molecules that were concordantly regulated in vivo.

摘要

在心房颤动(AF)期间,快速刺激会导致心房重构,从而增加心律失常易感性。我们使用已建立的心房(HL-1)心肌细胞模型,研究了与早期心房肌细胞重构相关的转录谱。将自发收缩的HL-1细胞在有无快速刺激的情况下培养24小时,然后收集RNA进行微阵列分析。我们鉴定出758个因快速刺激而发生显著改变的基因(626个上调和132个下调)。基于这些基因在人类AF和/或实验性房性心动过速(AT)中的生理相关性以及微阵列结果中的调控情况,我们使用实时定量RT-PCR对选定基因进行了验证。在某些情况下,转录变化很快,在3小时内就会发生。对于选定的一组基因,我们对表达的蛋白质进行了验证,结果与观察到的转录变化相关。使用基因本体数据库对显著调控的基因进行分类,以便将我们的研究结果与之前发表的心肌转录谱进行直接比较。对于广泛的功能类别,快速刺激的HL-1心肌细胞与人类AF之间有很强的一致性,但与其他重构模式(心肌病和运动)不一致。许多单个基因的变化在AF/AT中是保守的,编码脑钠肽和心房钠尿肽前体的基因以及热休克蛋白显著上调。对于保守基因,细胞应激和存活反应都很明显。我们的结果表明,在转录重构的大规模模式以及特定单个基因的调控方面,与人类AF/实验性AT具有相似性。重要的是,我们鉴定出了在体内一致调控的新途径和分子。

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