Kim Kyoung-Han, Rosen Anna, Hussein Samer M I, Puviindran Vijitha, Korogyi Adam S, Chiarello Carmelina, Nagy Andras, Hui Chi-Chung, Backx Peter H
Program in Developmental &Stem Cell Biology, The Hospital for Sick Children, Toronto, ON M5G 0A4, Canada.
The Heart and Stroke Richard Lewar Centre of Excellence, University of Toronto, Toronto, ON M5S 3E2, Canada.
Sci Rep. 2016 Jan 20;6:19197. doi: 10.1038/srep19197.
The ventricular conduction system (VCS) orchestrates the harmonious contraction in every heartbeat. Defects in the VCS are often associated with life-threatening arrhythmias and also promote adverse remodeling in heart disease. We have previously established that the Irx3 homeobox gene regulates rapid electrical propagation in the VCS by modulating the transcription of gap junction proteins Cx40 and Cx43. However, it is unknown whether other factors contribute to the conduction defects observed in Irx3 knockout (Irx3(-/-)) mice. In this study, we show that during the early postnatal period, Irx3(-/-) mice develop morphological defects in the VCS which are temporally dissociated from changes in gap junction expression. These morphological defects were accompanied with progressive changes in the cardiac electrocardiogram including right bundle branch block. Hypoplastic VCS was not associated with increased apoptosis of VCS cardiomyocytes but with a lack of recruitment and maturation of ventricular cardiomyocytes into the VCS. Computational analysis followed by functional verification revealed that Irx3 promotes VCS-enriched transcripts targeted by Nkx2.5 and/or Tbx5. Altogether, these results indicate that, in addition to ensuring the appropriate expression of gap junctional channels in the VCS, Irx3 is necessary for the postnatal maturation of the VCS, possibly via its interactions with Tbx5 and Nkx2.5.
心室传导系统(VCS)协调着每一次心跳中的和谐收缩。VCS的缺陷通常与危及生命的心律失常相关,并且还会促进心脏病中的不良重塑。我们之前已经确定,Irx3同源框基因通过调节缝隙连接蛋白Cx40和Cx43的转录来调控VCS中的快速电传导。然而,尚不清楚是否有其他因素导致在Irx3基因敲除(Irx3(-/-))小鼠中观察到的传导缺陷。在本研究中,我们发现,在出生后早期,Irx3(-/-)小鼠的VCS出现形态学缺陷,这些缺陷在时间上与缝隙连接表达的变化无关。这些形态学缺陷伴随着心电图的渐进性变化,包括右束支传导阻滞。发育不全的VCS与VCS心肌细胞凋亡增加无关,而是与心室心肌细胞缺乏募集和成熟进入VCS有关。通过计算分析随后进行功能验证发现,Irx3促进由Nkx2.5和/或Tbx5靶向的富含VCS的转录本。总之,这些结果表明,除了确保VCS中缝隙连接通道的适当表达外,Irx3对于VCS出生后的成熟也是必需的,可能是通过其与Tbx5和Nkx2.5的相互作用。