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首页> 外文期刊>The Journal of biological chemistry >Targeted Disruption of Na+/Ca2+ Exchanger Gene Leads to Cardiomyocyte Apoptosis and Defects in Heartbeat*
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Targeted Disruption of Na+/Ca2+ Exchanger Gene Leads to Cardiomyocyte Apoptosis and Defects in Heartbeat*

机译:Na + / Ca2 +交换子基因的靶向破坏导致心肌细胞凋亡和心跳缺陷*

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Ca2+, which enters cardiac myocytes through voltage-dependent Ca2+channels during excitation, is extruded from myocytes primarily by the Na+/Ca2+ exchanger (NCX1) during relaxation. The increase in intracellular Ca2+ concentration in myocytes by digitalis treatment and after ischemia/reperfusion is also thought to result from the reverse mode of the Na+/Ca2+ exchange mechanism. However, the precise roles of the NCX1 are still unclear because of the lack of its specific inhibitors. We generated Ncx1-deficient mice by gene targeting to determine the in vivo function of the exchanger. Homozygous Ncx1-deficient mice died between embryonic days 9 and 10. Their hearts did not beat, and cardiac myocytes showed apoptosis. No forward mode or reverse mode of the Na+/Ca2+ exchange activity was detected in null mutant hearts. The Na+-dependent Ca2+ exchange activity as well as protein content of NCX1 were decreased by ~50% in the heart, kidney, aorta, and smooth muscle cells of the heterozygous mice, and tension development of the aortic ring in Na+-free solution was markedly impaired in heterozygous mice. These findings suggest that NCX1 is required for heartbeats and survival of cardiac myocytes in embryos and plays critical roles in Na+-dependent Ca2+ handling in the heart and aorta.
机译:在兴奋过程中通过电压依赖性Ca2 +通道进入心肌细胞的Ca2 +主要是由Na + / Ca2 +交换剂(NCX1)在松弛过程中从心肌细胞中挤出。洋地黄处理和缺血/再灌注后肌细胞中细胞内Ca2 +浓度的增加也被认为是由Na + / Ca2 +交换机制的相反模式引起的。但是,由于缺乏特异性抑制剂,NCX1的确切作用仍不清楚。我们通过基因定位来产生Ncx1缺陷型小鼠,以确定交换子的体内功能。纯合Ncx1缺陷小鼠在胚胎的第9天到第10天之间死亡。他们的心脏没有跳动,并且心肌细胞显示出凋亡。在无效突变体心脏中未检测到Na + / Ca2 +交换活性的正向或反向模式。在杂合小鼠的心脏,肾脏,主动脉和平滑肌细胞中,Na +依赖性的Ca2 +交换活性以及NCX1的蛋白质含量降低了约50%,并且在无Na +的溶液中主动脉环的张力逐渐增大。在杂合小鼠中明显受损。这些发现表明,NCX1是胚胎心跳和心肌细胞存活所必需的,并且在心脏和主动脉中Na +依赖性Ca2 +的处理中起着关键作用。

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