Department of Physiology, Institute of Biomedicine, University of Turku, Kiinamyllynkatu 10, FIN-20520 Turku, Finland.
Endocrinology. 2010 Apr;151(4):1884-92. doi: 10.1210/en.2009-0928. Epub 2010 Feb 25.
Hydroxysteroid (17beta) dehydrogenase 7 (HSD17B7) has been shown to catalyze the conversion of both estrone to estradiol (17-ketosteroid reductase activity) and zymosterone to zymosterol (3-ketosteroid reductase activity involved in cholesterol biosynthesis) in vitro. To define the metabolic role of the enzyme in vivo, we generated knockout mice deficient in the enzyme activity (HSD17B7KO). The data showed that the lack of HSD17B7 results in a blockage in the de novo cholesterol biosynthesis in mouse embryos in vivo, and HSD17BKO embryos die at embryonic day (E) 10.5. Analysis of neural structures revealed a defect in the development of hemispheres of the front brain with an increased apoptosis in the neuronal tissues. Morphological defects in the cardiovascular system were also observed from E9.5 onward. Mesodermal, endodermal, and hematopoietic cells were all detected by the histological analysis of the visceral yolk sac, whereas no organized vessels were observed in the knockout yolk sac. Immunohistological staining for platelet endothelial cell adhesion molecule-1 indicated that the complexity of the vasculature also was reduced in the HSD17B7KO embryos, particularly in the head capillary plexus and branchial arches. At E8.5-9.5, the heart development and the looping of the heart appeared to be normal in the HSD17B7KO embryos. However, at E10.5 the heart was dilated, and the thickness of the cardiac muscle and pericardium in the HSD17B7KO embryos was markedly reduced, and immunohistochemical staining for GATA-4 revealed that HSD17B7KO embryos had a reduced number of myocardial cells. The septum of the atrium was also defected in the knockout mice.
羟甾体 17β 脱氢酶 7(HSD17B7)已被证明可在体外催化雌酮转化为雌二醇(17-酮类固醇还原酶活性)和孕烯醇酮转化为孕烯醇酮(参与胆固醇生物合成的 3-酮类固醇还原酶活性)。为了确定该酶在体内的代谢作用,我们生成了缺乏该酶活性的敲除小鼠(HSD17B7KO)。数据表明,缺乏 HSD17B7 会导致体内小鼠胚胎从头胆固醇生物合成受阻,HSD17BKO 胚胎在胚胎第 10.5 天死亡。对神经结构的分析显示,前脑半球的发育存在缺陷,神经元组织中的细胞凋亡增加。从 E9.5 开始还观察到心血管系统的形态缺陷。内脏卵黄囊的组织学分析检测到中胚层、内胚层和造血细胞,而在敲除卵黄囊中未观察到有组织的血管。血小板内皮细胞黏附分子-1 的免疫组织化学染色表明,HSD17B7KO 胚胎的血管复杂性也降低,尤其是在头部毛细血管丛和鳃弓中。在 E8.5-9.5 时,HSD17B7KO 胚胎的心脏发育和心脏环化似乎正常。然而,在 E10.5 时,心脏扩张,HSD17B7KO 胚胎的心肌和心包厚度明显减少,GATA-4 的免疫组织化学染色表明 HSD17B7KO 胚胎的心肌细胞数量减少。在敲除小鼠中,心房的中隔也存在缺陷。