Teutsch Christine, Kondo Richard P, Dederko Dorothy A, Chrast Jacqueline, Chien Kenneth R, Giles Wayne R
Department of Bioengineering, University of California, San Diego, La Jolla, CA, USA.
Cardiovasc Res. 2007 Mar 1;73(4):739-49. doi: 10.1016/j.cardiores.2006.11.034. Epub 2006 Nov 30.
Regional differences in repolarizing K(+) current densities and expression levels of their molecular components are important for coordinating the pattern of electrical excitation and repolarization of the heart. The small size of hearts from mice may obscure these interventricular and/or transmural expression differences of K(+) channels. We have examined this possibility in adult mouse ventricle using a technology that provides very high spatial resolution of tissue collection.
Conventional manual dissection and laser capture microdissection (LCM) were utilized to dissect tissue from distinct ventricular regions. RNA was isolated from epicardial, mid-myocardial and endocardial layers of both the right and left ventricles. Real-time RT-PCR was used to quantify the transcript expression in these different regions.
LCM revealed significant interventricular and transmural gradients for both Kv4.2 and the alpha-subunit of KChIP2. The expression profile of a second K(+) channel transcript, Kir2.1, which is responsible for the inwardly rectifying K(+) current I(k1), showed no interventricular or transmural gradients and therefore served as a negative control.
Our findings are in contrast to previous reports of a relatively uniform left ventricular transmural pattern of expression of Kv4.2, Kv4.3 and KChIP2 in adult mouse heart, which appear to be different than that in larger mammals. Specifically, our results demonstrate significant epi- to endocardial differences in the patterns of expression of both Kv4.2 and KChIP2.
复极化钾离子电流密度及其分子成分的表达水平存在区域差异,这对于协调心脏电兴奋和复极化模式至关重要。小鼠心脏体积小,可能会掩盖钾离子通道在心室间和/或跨壁的表达差异。我们使用一种能提供非常高组织采集空间分辨率的技术,在成年小鼠心室中研究了这种可能性。
采用传统手动解剖和激光捕获显微切割(LCM)技术,从不同的心室区域分离组织。从右心室和左心室的心外膜、心肌中层和心内膜层分离RNA。使用实时逆转录聚合酶链反应(RT-PCR)对这些不同区域的转录本表达进行定量分析。
LCM显示,Kv4.2和KChIP2的α亚基在心室间和跨壁均存在显著梯度。另一种钾离子通道转录本Kir2.1的表达谱,其负责内向整流钾离子电流I(k1),未显示心室间或跨壁梯度,因此作为阴性对照。
我们的研究结果与之前关于成年小鼠心脏中Kv4.2、Kv4.3和KChIP2在左心室跨壁表达相对均匀的报道相反,这似乎与较大哺乳动物不同。具体而言,我们的结果表明,Kv4.2和KChIP2的表达模式在心外膜到心内膜存在显著差异。