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实验性心力衰竭犬心房与心室基因表达重塑的显著差异。

Marked differences between atrial and ventricular gene-expression remodeling in dogs with experimental heart failure.

作者信息

Cardin Sophie, Pelletier Patricia, Libby Eric, Le Bouter Sabrina, Xiao Ling, Kääb Stefan, Demolombe Sophie, Glass Leon, Nattel Stanley

机构信息

Research Center and Department of Medicine, Montreal Heart Institute and Université de Montréal, Montreal, Quebec, Canada.

出版信息

J Mol Cell Cardiol. 2008 Dec;45(6):821-31. doi: 10.1016/j.yjmcc.2008.08.007. Epub 2008 Aug 30.

Abstract

Congestive heart failure (CHF) causes arrhythmogenic, structural and contractile remodeling, with important atrial-ventricular differences: atria show faster and greater inflammation, cell-death and fibrosis. The present study assessed time-dependent left atrial (LA) and ventricular (LV) gene-expression changes in CHF. Groups of dogs were submitted to ventricular tachypacing (VTP, 240 bpm) for 24 h or 2 weeks, and compared to sham-instrumented animals. RNA from isolated LA and LV cardiomyocytes of each dog was analyzed by canine-specific microarrays (>21,700 probe-sets). LA showed dramatic gene-expression changes, with 4785 transcripts significantly-altered (Q<5) at 24-hour and 6284 at 2-week VTP. LV gene-changes were more limited, with 52 significantly-altered at 24-hour and 130 at 2-week VTP. Particularly marked differences were seen in ECM genes, with 153 changed in LA (e.g. approximately 65-fold increase in collagen-1) at 2-week VTP versus 2 in LV; DNA/RNA genes (LA=358, LV=7); protein biosynthesis (LA=327, LV=14); membrane transport (LA=230, LV=8); cell structure and mobility (LA=159, LV=6) and coagulation/inflammation (LA=147, LV=1). Noteworthy changes in LV were genes involved in metabolism (35 genes; creatine-kinase B increased 8-fold at 2-week VTP) and Ca(2+)-signalling. LA versus LV differential gene-expression decreased over time: 1567 genes were differentially expressed (Q<1) at baseline, 1499 at 24-hour and 897 at 2-week VTP. Pathway analysis revealed particularly-important changes in LA for mitogen-activated protein-kinase, apoptotic, and ubiquitin/proteasome systems, and LV for Krebs cycle and electron-transfer complex I/II genes. VTP-induced CHF causes dramatically more gene-expression changes in LA than LV, dynamically altering the LA-LV differential gene-expression pattern. These results are relevant to understanding chamber-specific remodeling in CHF.

摘要

充血性心力衰竭(CHF)会导致致心律失常、结构和收缩重塑,心房和心室存在重要差异:心房炎症、细胞死亡和纤维化出现得更快且更严重。本研究评估了CHF中左心房(LA)和心室(LV)基因表达随时间的变化。将犬分组,使其进行24小时或2周的心室快速起搏(VTP,240次/分钟),并与假手术动物进行比较。通过犬特异性微阵列(>21,700个探针组)分析每只犬分离的LA和LV心肌细胞中的RNA。LA显示出显著的基因表达变化,在24小时VTP时4785个转录本显著改变(Q<5),在2周VTP时为6284个。LV的基因变化更有限,在24小时VTP时有52个显著改变,在2周VTP时有130个。在细胞外基质(ECM)基因中观察到特别明显的差异,在2周VTP时LA中有153个改变(例如胶原蛋白-1增加约65倍),而LV中为2个;DNA/RNA基因(LA = 358,LV = 7);蛋白质生物合成(LA = 327,LV = 14);膜转运(LA = 230,LV = 8);细胞结构和迁移(LA = 159,LV = 6)以及凝血/炎症(LA = 147,LV = 1)。LV中值得注意的变化是参与代谢的基因(35个基因;在2周VTP时肌酸激酶B增加8倍)和Ca(2+)信号传导。LA与LV的差异基因表达随时间减少:在基线时1567个基因差异表达(Q<1),在24小时时为1499个,在2周VTP时为897个。通路分析显示,LA中丝裂原活化蛋白激酶、凋亡和泛素/蛋白酶体系统有特别重要的变化,而LV中三羧酸循环和电子传递复合体I/II基因有重要变化。VTP诱导的CHF在LA中引起的基因表达变化比LV中显著得多,动态改变了LA-LV差异基因表达模式。这些结果与理解CHF中的腔室特异性重塑相关。

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