首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Transfection of beta-casein chimeric gene and hormonal induction of its expression in primary murine mammary epithelial cells.
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Transfection of beta-casein chimeric gene and hormonal induction of its expression in primary murine mammary epithelial cells.

机译:β-酪蛋白嵌合基因的转染及其在原代小鼠乳腺上皮细胞中的激素诱导。

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摘要

To study the regulatory sequence elements responsible for casein gene expression, we constructed a chimeric gene containing 5.3 kilobases (kb) of the 5'-flanking sequence and 1.6 kb of the 3'-flanking sequence of the mouse beta-casein gene fused to the bacterial chloramphenicol acetyl-transferase (CAT) gene. The chimeric gene was transfected by the calcium phosphate-precipitation procedure into primary mouse mammary epithelial cells prepared from pregnant mice. The transfection procedure had negligible effect on expression of the endogenous beta-casein gene. Expression of the beta-casein-CAT chimeric gene required the synergistic actions of insulin, hydrocortisone, and prolactin. Expression of the chimeric gene also depended on the appropriate substratum because the degree of hormonal induction of the chimeric gene was much higher in cells cultured on a reconstituted basement membrane (Matrigel) than in cells cultured on either type I collagen gel or plastic. On the other hand, the expression of a simian virus 40-CAT chimeric gene in which the CAT gene was driven by the early promoter of the virus was not influenced by the hormonal milieu and occurred at the highest level in cells cultured on plastic. Additional transfection experiments with a series of beta-casein-CAT constructs suggested the existence of regulatory elements responsible for hormonal induction and negative regulatory elements.
机译:为了研究负责酪蛋白基因表达的调控序列元件,我们构建了一个嵌合基因,该基因含有5.3个碱基的5'-侧翼序列和1.6 kb的小鼠β-酪蛋白基因的3'-侧翼序列,与该蛋白融合。细菌氯霉素乙酰转移酶(CAT)基因。通过磷酸钙沉淀法将嵌合基因转染到由怀孕小鼠制备的原代小鼠乳腺上皮细胞中。转染过程对内源性β-酪蛋白基因的表达影响可忽略不计。 β-酪蛋白-CAT嵌合基因的表达需要胰岛素,氢化可的松和催乳激素的协同作用。嵌合基因的表达也取决于适当的基质,因为在重组基底膜(Matrigel)上培养的细胞中,嵌合基因的激素诱导程度比在I型胶原蛋白凝胶或塑料上培养的细胞中更高。另一方面,由病毒的早期启动子驱动的CAT基因的猿猴病毒40-CAT嵌合基因的表达不受激素环境的影响,并且在塑料培养的细胞中以最高水平表达。使用一系列β-酪蛋白-CAT构建体进行的其他转染实验表明,存在负责激素诱导的调节元件和负调节元件。

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