Chammas R, Taverna D, Cella N, Santos C, Hynes N E
Ludwig Institute for Cancer Research, Sao Paulo, Brazil.
J Cell Sci. 1994 Apr;107 ( Pt 4):1031-40. doi: 10.1242/jcs.107.4.1031.
HC11 is a normal mouse mammary epithelial cell line that requires certain growth factors, such as EGF or bFGF, to respond optimally to lactogenic hormones and produce the differentiation marker beta-casein. Growth in insulin (Ins) or PDGF does not produce cells competent to respond to lactogenic hormones. Here we show that competency for differentiation is due at least in part to the modulation of extracellular matrix components. In particular we have studied laminin and tenascin. EGF alters endogenous laminin assembly. In addition, promotion of competency can be partially mimicked by plating HC11 cells on the E8 laminin fragment, which is able to induce lactogenic responsiveness in cells grown in the absence of EGF or bFGF. The production and assembly of tenascin is also dependent upon the growth conditions of the HC11 cells. EGF- or bFGF-grown competent cells produce tenascin but do not assemble it at the extracellular matrix as efficiently as Ins- or PDGF-grown, non-competent cells. This alteration apparently leads to a change in the cellular microenvironment that supports beta-casein production. In addition, when competent cells are plated on dishes coated with tenascin, lactogenic hormone induction of beta-casein is inhibited. The data suggest that tenascin assembly and beta-casein production are opposing features of a coordinated differentiation program of HC11 cells.
HC11是一种正常的小鼠乳腺上皮细胞系,它需要某些生长因子,如表皮生长因子(EGF)或碱性成纤维细胞生长因子(bFGF),才能对催乳激素做出最佳反应并产生分化标志物β-酪蛋白。在胰岛素(Ins)或血小板衍生生长因子(PDGF)中生长不会产生能够对催乳激素做出反应的细胞。在这里,我们表明分化能力至少部分归因于细胞外基质成分的调节。特别是,我们研究了层粘连蛋白和腱生蛋白。表皮生长因子会改变内源性层粘连蛋白的组装。此外,将HC11细胞接种在E8层粘连蛋白片段上可以部分模拟分化能力的促进,该片段能够在缺乏表皮生长因子或碱性成纤维细胞生长因子的情况下生长的细胞中诱导催乳反应性。腱生蛋白的产生和组装也取决于HC11细胞的生长条件。在表皮生长因子或碱性成纤维细胞生长因子中生长的有分化能力的细胞会产生腱生蛋白,但在细胞外基质中的组装效率不如在胰岛素或血小板衍生生长因子中生长的无分化能力的细胞。这种改变显然导致了支持β-酪蛋白产生的细胞微环境的变化。此外,当有分化能力的细胞接种在涂有腱生蛋白的培养皿上时,催乳激素对β-酪蛋白的诱导作用会受到抑制。数据表明,腱生蛋白的组装和β-酪蛋白的产生是HC11细胞协调分化程序的相反特征。