Srebrow A, Friedmann Y, Ravanpay A, Daniel C W, Bissell M J
Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
J Cell Biochem. 1998 Jun 15;69(4):377-91. doi: 10.1002/(sici)1097-4644(19980615)69:4<377::aid-jcb1>3.0.co;2-k.
Homeobox-containing genes encode transcriptional regulators involved in cell fate and pattern formation during embryogenesis. Recently, it has become clear that their expression in continuously developing adult tissues, as well as in tumorigenesis, may be of equal importance. In the mouse mammary gland, expression patterns of several homeobox genes suggest a role in epithelial-stromal interactions. Because the stroma and the extracellular matrix (ECM) are known to influence both functional and morphological development of the mammary gland, we asked whether these genes would be expressed postnatally in the gland and also in cell lines in culture and whether they could be modulated by ECM. Using a polymerase chain reaction-base strategy five members of the Hox gene clusters a and b were shown to be expressed in cultured mouse mammary cells. Hoxa-1 and Hoxb-7 were chosen for further analysis. Hoxb-7 was chosen because it had not been described previously in the mammary gland and was modulated at different stages of gland development. Hoxa-1 was chosen because it was reported previously to be expressed only in mammary tumors, and not in normal glands. We showed that culturing the mammary epithelial cell lines SCp2 and CID-9 on a basement membrane (BM) that was previously shown to induce a lactational phenotype was necessary to turn off Hoxb-7, but a change in cell shape, brought about by culturing the cells on an inert substratum such as polyHEMA, was sufficient to downregulate Hoxa-1. This is the first report of modulation of homeobox genes by ECM. The results provide a rationale for the differential pattern of expression in vivo of Hoxa-1 and Hoxb-7 during different stages of development. The culture model should permit further in-depth analysis of the molecular mechanisms involved in how ECM signaling and homeobox genes may interact to bring about tissue organization.
含同源异型盒的基因编码在胚胎发育过程中参与细胞命运和模式形成的转录调节因子。最近,有一点变得很清楚,即它们在持续发育的成年组织中的表达以及在肿瘤发生过程中的表达可能同样重要。在小鼠乳腺中,几种同源异型盒基因的表达模式表明其在上皮-基质相互作用中发挥作用。由于已知基质和细胞外基质(ECM)会影响乳腺的功能和形态发育,我们想知道这些基因在出生后的腺体以及培养的细胞系中是否会表达,以及它们是否会受到ECM的调节。使用基于聚合酶链反应的策略,发现Hox基因簇a和b的五个成员在培养的小鼠乳腺细胞中表达。选择Hoxa-1和Hoxb-7进行进一步分析。选择Hoxb-7是因为它之前未在乳腺中被描述过,并且在腺体发育的不同阶段受到调节。选择Hoxa-1是因为之前报道它仅在乳腺肿瘤中表达,而不在正常腺体中表达。我们发现,将乳腺上皮细胞系SCp2和CID-9培养在先前已证明可诱导泌乳表型的基底膜(BM)上对于关闭Hoxb-7是必要的,但通过在惰性底物(如聚甲基丙烯酸羟乙酯)上培养细胞所引起的细胞形状变化足以下调Hoxa-1。这是关于ECM调节同源异型盒基因的首次报道。这些结果为Hoxa-1和Hoxb-7在发育不同阶段体内表达的差异模式提供了理论依据。该培养模型应有助于进一步深入分析ECM信号传导和同源异型盒基因如何相互作用以实现组织构建所涉及的分子机制。