Eckardt D, Theis M, Degen J, Ott T, van Rijen H V M, Kirchhoff S, Kim J-S, de Bakker J M T, Willecke K
Institut für Genetik, Abteilung Molekulargenetik, Universität Bonn, Römerstrasse 164, 53117 Bonn, Germany.
J Mol Cell Cardiol. 2004 Jan;36(1):101-10. doi: 10.1016/j.yjmcc.2003.10.006.
The gap junction protein Connexin43 (Cx43) is expressed in various cell types during embryonic development and in adult mice. Cx43 null mice (Cx43-/-) die perinatally due to cardiac malformation. In order to define the major functional role of Cx43 gap junction channels in adult mice and to circumvent perinatal death as well as direct or indirect compensation of Cx43 deficiency during development, we established a novel conditional Cx43 mouse mutant. To ablate Cx43 in adult mice in all cells that express Cx43 at a certain time, we targeted the 4-hydroxytamoxifen inducible Cre recombinase, Cre-ER(T), into the endogenous Cx43 locus. This approach left only one Cx43 coding region to be deleted upon induction of Cre-ER(T) activity. Highly efficient inducible ablation of Cx43 was shown in an embryonic stem cell test system and in adult mice. Although Cx43 protein was decreased in different tissues after induction of Cre-ER(T)-mediated recombination, cardiac abnormalities most likely account for death of those mice. Surface and telemetric ECG recordings revealed significant delay of ventricular activation and death during periods of bradyarrhythmia preceded by tachycardias. This novel approach of inducible ablation of Cx43 highlights the functional importance of normal activation of ventricular cardiomyocytes mediated by Cx43 gap junction channels in adult mouse heart to prevent initiation of fatal arrhythmias. The new mouse model should be useful for further analyses of molecular changes initiated by acute loss of Cx43 expression in various cell types.
缝隙连接蛋白连接蛋白43(Cx43)在胚胎发育期间的各种细胞类型以及成年小鼠中均有表达。Cx43基因敲除小鼠(Cx43-/-)因心脏畸形在围产期死亡。为了确定Cx43缝隙连接通道在成年小鼠中的主要功能作用,并规避围产期死亡以及发育过程中Cx43缺陷的直接或间接补偿,我们建立了一种新型的条件性Cx43小鼠突变体。为了在成年小鼠中特定时间表达Cx43的所有细胞中去除Cx43,我们将4-羟基他莫昔芬诱导型Cre重组酶Cre-ER(T)靶向到内源性Cx43基因座。这种方法在诱导Cre-ER(T)活性后仅留下一个Cx43编码区有待删除。在胚胎干细胞测试系统和成年小鼠中均显示出高效的Cx43诱导性切除。尽管在诱导Cre-ER(T)介导的重组后不同组织中的Cx43蛋白减少,但心脏异常很可能是这些小鼠死亡的原因。体表和遥测心电图记录显示,在心动过速之前的缓慢性心律失常期间,心室激活明显延迟并导致死亡。这种诱导性切除Cx43的新方法突出了成年小鼠心脏中由Cx43缝隙连接通道介导的心室心肌细胞正常激活对于预防致命性心律失常发生的功能重要性。这种新的小鼠模型应该有助于进一步分析各种细胞类型中Cx43表达急性缺失引发的分子变化。