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红色荧光蛋白(RFP)转基因克隆雄猫中种系传递的确认。

Confirmation of germ-line transmission in the red fluorescence protein (RFP) transgenic cloned male cat.

作者信息

Cho Su-Jin, Lee Young S, Lee Jae-Ik, Bang Jae-Il, Yang Jing, Klassen Henry, Kong Il-Keun

机构信息

Division of Applied Life Science (BK21), Graduate School of Gyeongsang National University, Jinju 660-701, Republic of Korea.

出版信息

Cell Reprogram. 2010 Dec;12(6):739-47. doi: 10.1089/cell.2010.0009. Epub 2010 Sep 6.

Abstract

The production of transgenic animals is highly desirable for biotechnology and basic research. We investigated the reproductive ability of a red fluorescence protein (RFP) transgenic cloned male cat (RFP TG cat) by natural mating with a domestic female cat. The RFP expression levels were examined in early embryogenesis, tissues from 45-day-old two fetuses, and four RFP TG cat offspring. The RFP gene was detected in tissue samples from one dead kitten, including several organs and the skin. Also, under a fluorescent light source, we were able to directly detect the RFP expression of in in vitro-produced blastocysts derived with sperm from the RFP TG cat. These results indicate that the RFP TG cat exhibits normal reproductive fertility, stable germ-line transmission of the RFP transgene, and characteristic RFP expression in its offspring. We isolated feline neural progenitor cells from a 45-day-old fetus derived from the natural mating of the RFP TG cat with a domestic female cat. Isolated brain and retinal progenitor cells were successfully passaged at least four times post isolation (day 23), and showed a high RFP expression level. This method of producing genetically modified cloned cats will be important for generating biomedical models of human diseases.

摘要

对于生物技术和基础研究而言,转基因动物的生产非常必要。我们通过将一只红色荧光蛋白(RFP)转基因克隆雄猫(RFP转基因猫)与一只家猫自然交配,研究了其繁殖能力。在早期胚胎发育、45日龄的两个胎儿的组织以及四只RFP转基因猫后代中检测了RFP表达水平。在一只死亡小猫的组织样本中检测到了RFP基因,包括几个器官和皮肤。此外,在荧光光源下,我们能够直接检测到用RFP转基因猫的精子产生的体外培养囊胚中的RFP表达。这些结果表明,RFP转基因猫表现出正常的生殖生育能力、RFP转基因的稳定种系传递以及其后代中特征性的RFP表达。我们从RFP转基因猫与家猫自然交配产生的45日龄胎儿中分离出猫神经祖细胞。分离出的脑和视网膜祖细胞在分离后(第23天)成功传代至少四次,并显示出高RFP表达水平。这种生产转基因克隆猫的方法对于生成人类疾病的生物医学模型将具有重要意义。

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