Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Heart and neural tube defects in transgenic mice overexpressing the Cx43 gap junction gene

作者:Janet L. Ewart, Matthew F. Cohen, Ralph A. Meyer, Guoying Huang, Andy Wessels, Robert G. Gourdie, Alvin J. Chin, S. M. J. Park, Bien O. Lazatin, S. Villabon, Clement Lo · 发表于:Development · 年份:1997 · DOI:10.1242/dev.124.7.1281 · 被引用次数:215 · 研究领域:Connexins and lens biology、Cancer-related molecular mechanisms research、RNA regulation and disease

Transgenic mice were generated containing a cytomegaloviral promoter driven construct (CMV43) expressing the gap junction polylpeptide connexin 43. RNA and protein analysis confirmed that the transgene was being expressed. In situ hybridization analysis of embryo sections revealed that transgene expression was targeted to the dorsal neural tube and in subpopulations of neural crest cells. This expression pattern was identical to that seen in transgenic mice harboring other constructs driven by the cytomegaloviral promoter (Kothary, R., Barton, S. C., Franz, T., Norris, M. L., Hettle, S. and Surani, M. A. H. (1991) Mech. Develop. 35, 25-31; Koedood, M., Fitchel, A., Meier, P. and Mitchell, P. (1995) J. Virol. 69, 2194-2207), and corresponded to a subset of the endogenous Cx43 expression domains. Significantly, dye injection studies showed that transgene expression resulted in an increase in gap junctional communication. Though viable and fertile, these transgenic mice exhibited reduced postnatal viability. Examination of embryos at various stages of development revealed developmental perturbations consisting of cranial neural tube defects (NTD) and heart malformations. Interestingly, breeding of the CMV43 transgene into the Cx43 knockout mice extended postnatal viability of mice homozygote for the Cx43 knockout allele, indicating that the CMV43 trangsene may partially complement the Cx43 deletion. Both the Cx43 knockout and the CMV43 transgenic mice exhibit heart defects assoc...