van Rijen Harold V M, Eckardt Dominik, Degen Joachim, Theis Martin, Ott Thomas, Willecke Klaus, Jongsma Habo J, Opthof Tobias, de Bakker Jacques M T
Department of Medical Physiology, University Medical Center Utrecht, PO Box 80043, 3508TA Utrecht, The Netherlands.
Circulation. 2004 Mar 2;109(8):1048-55. doi: 10.1161/01.CIR.0000117402.70689.75. Epub 2004 Feb 16.
Connexin 43 (Cx43) is a major determinant of conduction in the ventricular working myocardium of mammals. We investigated the effect of decreased Cx43 expression on conduction velocity and arrhythmogenesis using adult mice with inducible deletion of Cx43.
Cx43Cre-ER(T)/+ mice, in which 1 coding region of the Cx43 gene was replaced by Cre-ER(T), were mated to Cx43fl/fl mice, generating Cx43Cre-ER(T)/fl mice. Application of 4-hydroxytamoxifen (4-OHT) induced Cre-ER(T)-mediated deletion of the floxed Cx43 allele. Epicardial ventricular mapping using a 13x19 multiterminal electrode grid (300-microm spacing) was performed on Langendorff-perfused hearts from Cx43fl/fl plus carrier (n=10), Cx43fl/fl plus 4-OHT (n=10), Cx43 Cre-ER(T)/fl plus carrier (n=9), and Cx43Cre-ER(T)/fl plus 4-OHT (n=10). Cx43 protein amount in group 3 hearts was decreased by 50% compared with group 1. 4-OHT did not affect cardiac protein amounts in group 2 but decreased Cx43 expression up to 95% in group 4 compared with group 3. Epicardial activation of both left ventricle (LV) and right ventricle (RV) during sinus rhythm was similar in all groups. Conduction velocity (CV) changed only in group 4 animals. For RV (LV), longitudinal CV decreased from 38 (35) to 31.6 (33.6) and transverse CV from 24.4 (16.8) to 10.1 (11.3) cm/s. Dispersion of conduction in RV (LV) was increased by 91% (38%). Programmed stimulation resulted in ventricular arrhythmias in group 4 (7 of 10 mice) but never in groups 1 through 3.
Heterozygous expression of Cx43 did not affect ventricular conduction velocity. Up to 95% decrease of Cx43 protein in 4-OHT-treated Cx43(Cre-ER(T)/fl) mice reduced conduction velocity and increased dispersion of conduction and propensity for ventricular arrhythmias.
连接蛋白43(Cx43)是哺乳动物心室工作心肌传导的主要决定因素。我们使用可诱导性缺失Cx43的成年小鼠,研究了Cx43表达降低对传导速度和心律失常发生的影响。
将Cx43基因的1个编码区被Cre-ER(T)取代的Cx43Cre-ER(T)/+小鼠与Cx43fl/fl小鼠交配,产生Cx43Cre-ER(T)/fl小鼠。应用4-羟基他莫昔芬(4-OHT)诱导Cre-ER(T)介导的Cx43floxed等位基因缺失。使用13×19多端电极网格(间距300微米)对来自Cx43fl/fl加载体(n=10)、Cx43fl/fl加4-OHT(n=10)、Cx43 Cre-ER(T)/fl加载体(n=9)和Cx43Cre-ER(T)/fl加4-OHT(n=10)的Langendorff灌注心脏进行心外膜心室标测。与第1组相比,第3组心脏中的Cx43蛋白量减少了50%。4-OHT对第2组心脏蛋白量无影响,但与第3组相比,第4组中Cx43表达降低了95%。所有组在窦性心律期间左心室(LV)和右心室(RV)的心外膜激活相似。仅第4组动物的传导速度(CV)发生了变化。对于RV(LV),纵向CV从38(35)降至31.6(33.6),横向CV从24.4(16.8)降至10.1(11.3)cm/s。RV(LV)中的传导离散度增加了91%(38%)。程序刺激在第4组(10只小鼠中的7只)中导致室性心律失常,但在第1至3组中从未发生。
Cx43的杂合表达不影响心室传导速度。在4-OHT处理的Cx43(Cre-ER(T)/fl)小鼠中,Cx43蛋白减少高达95%,降低了传导速度,增加了传导离散度和室性心律失常的倾向。