Nandi A K, Roginski R S, Gregg R G, Smithies O, Skoultchi A I
Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461.
Proc Natl Acad Sci U S A. 1988 Jun;85(11):3845-9. doi: 10.1073/pnas.85.11.3845.
We have examined the effect of the site of integration on the expression of cloned genes introduced into cultured erythroid cells. Smithies et al. [Smithies, O., Gregg, R.G., Boggs, S.S., Koralewski, M.A. & Kucherlapati, R.S. (1985) Nature (London) 317, 230-234] reported the targeted integration of DNA into the human beta-globin locus on chromosome 11 in a mouse erythroleukemia-human cell hybrid. These hybrid cells can undergo erythroid differentiation leading to greatly increased mouse and human beta-globin synthesis. By transfection of these hybrid cells with a plasmid carrying a modified human beta-globin gene and a foreign gene composed of the coding sequence of the bacterial neomycin-resistance gene linked to simian virus 40 transcription signals (SVneo), cells were obtained in which the two genes are integrated at the beta-globin locus on human chromosome 11 or at random sites. When we examined the response of the integrated genes to cell differentiation, we found that the genes inserted at the beta-globin locus were induced during differentiation, whereas randomly positioned copies were not induced. Even the foreign SVneo gene was inducible when it had been integrated at the beta-globin locus. The results show that genes introduced at the beta-globin locus acquire some of the regulatory properties of globin genes during erythroid differentiation.
我们研究了整合位点对导入培养的红系细胞中的克隆基因表达的影响。史密斯等人[史密斯,O.,格雷格,R.G.,博格斯,S.S.,科拉莱夫斯基,M.A.和库彻拉帕蒂,R.S.(1985年)《自然》(伦敦)317卷,230 - 234页]报道了在小鼠红白血病 - 人细胞杂种中,DNA靶向整合到11号染色体上的人β - 珠蛋白基因座。这些杂种细胞可进行红系分化,导致小鼠和人β - 珠蛋白合成大幅增加。通过用携带修饰的人β - 珠蛋白基因和由与猿猴病毒40转录信号(SVneo)相连的细菌新霉素抗性基因编码序列组成的外源基因的质粒转染这些杂种细胞,获得了两个基因整合到人类11号染色体上的β - 珠蛋白基因座或随机位点的细胞。当我们检测整合基因对细胞分化的反应时,发现插入到β - 珠蛋白基因座的基因在分化过程中被诱导,而随机定位的拷贝则未被诱导。甚至当外源SVneo基因整合到β - 珠蛋白基因座时也可被诱导。结果表明,在红系分化过程中,导入到β - 珠蛋白基因座的基因获得了一些珠蛋白基因的调控特性。