Niranjan B, Buluwela L, Yant J, Perusinghe N, Atherton A, Phippard D, Dale T, Gusterson B, Kamalati T
Division of Cell Biology and Experimental Pathology, Institute of Cancer Research, Surrey, UK.
Development. 1995 Sep;121(9):2897-908. doi: 10.1242/dev.121.9.2897.
The mammary gland is a renewing tissue in which morphogenetic processes and differentiation occur cyclically during the menstrual cycle, pregnancy and lactation. These events have been shown to be dependent upon epithelial-mesenchymal interactions. Studies of the effects of individual factors, their cellular source and their target cell populations in the different developmental stages of the mammary gland are greatly facilitated by the accessibility of this organ and the application of new techniques that allow purification of the major epithelial and stromal components of this tissue. Here we demonstrate that HGF/SF and its cellular receptor, c-met, are expressed and regulated temporally during mouse mammary development and differentiation. We show that human and mouse mammary fibroblasts produce HGF/SF and that HGF/SF is not only mitogenic but morphogenic and motogenic for both human and mouse mammary epithelial cells. We have found that human luminal and myoepithelial cells express c-met differentially and that HGF/SF has different effects on these two mammary epithelial cell populations. HGF/SF is mitogenic for luminal cells but not myoepithelial cells, and morphogenic to myoepithelial cells but not luminal cells. This is discussed in the context of the proliferative compartments in the normal mammary gland and the potential role of the myoepithelial cells to act as the skeleton for ductal development.
乳腺是一种不断更新的组织,在月经周期、怀孕和哺乳期间,形态发生过程和分化会周期性地发生。这些事件已被证明依赖于上皮-间充质相互作用。乳腺在不同发育阶段的个体因素、其细胞来源及其靶细胞群体的影响研究,因该器官易于获取以及应用允许纯化该组织主要上皮和基质成分的新技术而得到极大便利。在此,我们证明肝细胞生长因子/散射因子(HGF/SF)及其细胞受体c-met在小鼠乳腺发育和分化过程中呈时间性表达和调控。我们表明,人和小鼠乳腺成纤维细胞产生HGF/SF,并且HGF/SF不仅对人和小鼠乳腺上皮细胞有促有丝分裂作用,还有形态发生和促运动作用。我们发现人管腔上皮细胞和肌上皮细胞对c-met的表达存在差异,并且HGF/SF对这两种乳腺上皮细胞群体有不同影响。HGF/SF对管腔上皮细胞有促有丝分裂作用,但对肌上皮细胞没有;对肌上皮细胞有形态发生作用,但对管腔上皮细胞没有。这将在正常乳腺的增殖区室以及肌上皮细胞作为导管发育骨架的潜在作用的背景下进行讨论。