Targeting of the Enhanced Green Fluorescent Protein Reporter to Adrenergic Cells in Mice

被引:0
|
作者
Jixiang Xia
Namita Varudkar
Candice N. Baker
Ibrahim Abukenda
Celines Martinez
Aruna Natarajan
Alexander Grinberg
Karl Pfeifer
Steven N. Ebert
机构
[1] College of Medicine,Burnett School of Biomedical Sciences
[2] University of Central Florida,Department of Pediatrics
[3] Medstar-Georgetown University Hospital,Program in Genomics of Differentiation, Eunice Kennedy Shriver National Institute of Child Health and Human Development
[4] National Institutes of Health,undefined
来源
Molecular Biotechnology | 2013年 / 54卷
关键词
Phenylethanolamine-; -methyltransferase; Adrenal medulla; Chromaffin cells; Green fluorescent protein; Knock-in;
D O I
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学科分类号
摘要
Adrenaline and noradrenaline are important neurotransmitter hormones that mediate physiological stress responses in adult mammals, and are essential for cardiovascular function during a critical period of embryonic/fetal development. In this study, we describe a novel mouse model system for identifying and characterizing adrenergic cells. Specifically, we generated a reporter mouse strain in which a nuclear-localized enhanced green fluorescent protein gene (nEGFP) was inserted into exon 1 of the gene encoding Phenylethanolamine n-methyltransferase (Pnmt), the enzyme responsible for production of adrenaline from noradrenaline. Our analysis demonstrates that this knock-in mutation effectively marks adrenergic cells in embryonic and adult mice. We see expression of nEGFP in Pnmt-expressing cells of the adrenal medulla in adult animals. We also note that nEGFP expression recapitulates the restricted expression of Pnmt in the embryonic heart. Finally, we show that nEGFP and Pnmt expressions are each induced in parallel during the in vitro differentiation of pluripotent mouse embryonic stem cells into beating cardiomyocytes. Thus, this new mouse genetic model should be useful for the identification and functional characterization of adrenergic cells in vitro and in vivo.
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页码:350 / 360
页数:10
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