Li M L, Aggeler J, Farson D A, Hatier C, Hassell J, Bissell M J
Proc Natl Acad Sci U S A. 1987 Jan;84(1):136-40. doi: 10.1073/pnas.84.1.136.
When primary mouse mammary epithelial cells are cultured on plastic, they rapidly lose their ability to synthesize and secrete most milk proteins even in the presence of lactogenic hormones, whereas cells cultured on released type I collagen gels show greatly enhanced mRNA levels and secretion rates of beta-casein and of some other milk proteins. We show here that culture on a reconstituted basement membrane from Engelbreth-Holm-Swarm tumor (EHS) allows greater than 90% of cells to produce high levels of beta-casein. By comparison, 30-40% of cells on released type 1 gels and only 2-10% of cells on plastic express beta-casein after 6 days in culture. Because only 40% of cells from late pregnant gland produced beta-casein before culture, the EHS matrix can both induce and maintain an increased level of casein gene expression. Individual basal lamina components were also evaluated. Type IV collagen and fibronectin had little effect on morphology and beta-casein mRNA levels. In contrast, both laminin and heparan sulfate proteoglycan increased beta-casein mRNA levels (1.5- to 4-fold and 2- to 8-fold, respectively). However, for heparan sulfate proteoglycan, increased message was not accompanied by increased secretion of beta-casein. Profound morphological differences were evident between cells cultured on plastic and on EHS matrix, the latter cells forming ducts, ductules, and lumina and resembling secretory alveoli. These results emphasize the vital role of the extracellular matrix in receiving and integrating structural and functional signals that can direct specific gene expression in differentiated tissues.
当原代小鼠乳腺上皮细胞在塑料培养皿上培养时,即使存在生乳激素,它们也会迅速丧失合成和分泌大多数乳蛋白的能力,而在释放的I型胶原凝胶上培养的细胞则显示出β-酪蛋白和其他一些乳蛋白的mRNA水平和分泌率大大提高。我们在此表明,在Engelbreth-Holm-Swarm肿瘤(EHS)的重组基底膜上培养可使超过90%的细胞产生高水平的β-酪蛋白。相比之下,在释放的1型凝胶上培养6天后,30 - 40%的细胞表达β-酪蛋白,而在塑料培养皿上培养的细胞只有2 - 10%表达β-酪蛋白。由于在培养前只有40%的晚期妊娠腺体细胞产生β-酪蛋白,因此EHS基质既能诱导又能维持酪蛋白基因表达水平的升高。还对单个基底膜成分进行了评估。IV型胶原和纤连蛋白对细胞形态和β-酪蛋白mRNA水平影响很小。相反,层粘连蛋白和硫酸乙酰肝素蛋白聚糖均能提高β-酪蛋白mRNA水平(分别提高1.5至4倍和2至8倍)。然而,对于硫酸乙酰肝素蛋白聚糖,mRNA水平的升高并未伴随β-酪蛋白分泌的增加。在塑料培养皿上培养的细胞与在EHS基质上培养的细胞之间存在明显的形态差异,后者的细胞形成导管、小导管和管腔,类似于分泌性肺泡。这些结果强调了细胞外基质在接收和整合可指导分化组织中特定基因表达的结构和功能信号方面的重要作用。