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通过钠钙交换体1(NCX1)的转基因表达对NCX1基因敲除小鼠进行部分挽救。

Partial rescue of the Na+-Ca2+ exchanger (NCX1) knock-out mouse by transgenic expression of NCX1.

作者信息

Cho Chung-Hyun, Lee So-Young, Shin Hee-Sup, Philipson Kenneth D, Lee Chin O

机构信息

Department of Life Science, Pohang University of Science and Technology, Pohang, Kyungbuk 790-784, Korea.

出版信息

Exp Mol Med. 2003 Apr 30;35(2):125-35. doi: 10.1038/emm.2003.18.

Abstract

The null mutation of cardiac Na(+)-Ca(2+) exchanger (NCX1) gene in mice caused death of embryo in utero at embryonic day (ED) 9.0-9.5 and this embryonic lethality appears resulted from abnormal heart development. In the present study, we investigated whether transgenic re-expression of NCX1 in mutant cardiac myocytes could rescue these lethal defects. Transgenic mice expressing the canine NCX1 in a cardiac specific manner were bred into the NCX1 knock-out background but did not prevent the fetal lethality associated with the NCX1 null allele. However, the NCX1 knock-out embryos with an NCX1 transgene survived with heart beatings until ED 10.5 which was one day longer than the survival of the NCX1 knock-out embryos (ED 9.5). At ED 10.5, however, the partially rescued NCX1 embryos might have succumbed to the lack of an organized vasculature in the yolk sacs. The placental labyrinth layer was reduced in size and largely avascular. The transgenic re-expression of NCX1 rescued heart beatings and survived longer, but was still insufficient for the mice to be completely rescued. Importantly, NCX1 was observed to express in the yolk sac and the placenta of wild type mice. The results suggest that defects in extra-embryonic compartments are causal to the lethality, and that NCX1 may play an important role in establishing vascularization in extra-embryonic tissues.

摘要

小鼠心脏钠钙交换体(NCX1)基因的无效突变导致胚胎在子宫内于胚胎第9.0 - 9.5天死亡,这种胚胎致死性似乎是由心脏发育异常所致。在本研究中,我们调查了在突变心肌细胞中转基因重新表达NCX1是否能挽救这些致命缺陷。以心脏特异性方式表达犬NCX1的转基因小鼠被培育到NCX1基因敲除背景中,但并未阻止与NCX1无效等位基因相关的胎儿致死性。然而,带有NCX1转基因的NCX1基因敲除胚胎心跳着存活到了胚胎第10.5天,比NCX1基因敲除胚胎(胚胎第9.5天)的存活时间长一天。然而,在胚胎第10.5天,部分挽救的NCX1胚胎可能已死于卵黄囊中缺乏有组织的脉管系统。胎盘迷路层尺寸减小且大部分无血管。NCX1的转基因重新表达挽救了心跳并存活得更长,但仍不足以使小鼠得到完全挽救。重要的是,观察到NCX1在野生型小鼠的卵黄囊和胎盘中表达。结果表明,胚外区室的缺陷是致死性的原因,并且NCX1可能在胚外组织血管形成中起重要作用。

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