Institut für Experimentelle und Klinische Pharmakologie und Toxikologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Germany.
J Mol Cell Cardiol. 2011 Dec;51(6):997-1006. doi: 10.1016/j.yjmcc.2011.09.005. Epub 2011 Sep 14.
HCN pacemaker channels (I(f) channels) are believed to contribute to important functions in the heart; thus these channels became an attractive target for generating transgenic mouse mutants to elucidate their role in physiological and pathophysiological cardiac conditions. A full understanding of cardiac I(f) and the interpretation of studies using HCN mouse mutants require detailed information about the expression profile of the individual HCN subunits. Here we investigate the cardiac expression pattern of the HCN isoforms at the mRNA as well as at the protein level. The specificity of antibodies used was strictly confirmed by the use of HCN1, HCN2 and HCN4 knockout animals. We find a low, but highly differential HCN expression profile outside the cardiac conduction pathway including left and right atria and ventricles. Additionally HCN distribution was investigated in tissue slices of the sinoatrial node, the atrioventricular node, the bundle of His and the bundle branches. The conduction system was marked by acetylcholine esterase staining. HCN4 was confirmed as the predominant isoform of the primary pacemaker followed by a distinct expression of HCN1. In contrast HCN2 shows only a confined expression to individual pacemaker cells. Immunolabeling of the AV-node reveals also a pronounced specificity for HCN1 and HCN4. Compared to the SN and AVN we found a low but selective expression of HCN4 as the only isoform in the atrioventricular bundle. However in the bundle branches HCN1, HCN4 and also HCN2 show a prominent and selective expression pattern. Our results display a characteristic distribution of individual HCN isoforms in several cardiac compartments and reveal that beside HCN4, HCN1 represents the isoform which is selectively expressed in most parts of the conduction system suggesting a substantial contribution of HCN1 to pacemaking.
HCN 起搏通道(If 通道)被认为对心脏的重要功能有贡献;因此,这些通道成为产生转基因小鼠突变体的有吸引力的目标,以阐明它们在生理和病理生理心脏条件中的作用。要充分了解心脏 If 并解释使用 HCN 小鼠突变体的研究,需要详细了解各个 HCN 亚基的表达谱。在这里,我们研究了 HCN 同工型在 mRNA 和蛋白质水平上的心脏表达模式。通过使用 HCN1、HCN2 和 HCN4 敲除动物,严格确认了抗体的特异性。我们发现,在心脏传导途径之外,包括左右心房和心室,存在低但高度差异的 HCN 表达谱。此外,还研究了窦房结、房室结、His 束和束支组织切片中的 HCN 分布。传导系统通过乙酰胆碱酯酶染色标记。HCN4 被确认为主要起搏细胞的主要同工型,其次是 HCN1 的明显表达。相比之下,HCN2 仅显示出对个别起搏细胞的受限表达。AV 结的免疫标记也显示出对 HCN1 和 HCN4 的明显特异性。与 SN 和 AVN 相比,我们发现 HCN4 作为唯一同工型在房室束中低但选择性表达。然而,在束支中,HCN1、HCN4 和 HCN2 表现出突出和选择性的表达模式。我们的结果显示了各个 HCN 同工型在几个心脏区室中的特征性分布,并表明除了 HCN4 之外,HCN1 代表在传导系统的大部分区域中选择性表达的同工型,这表明 HCN1 对起搏有实质性贡献。