Jaskoll T, Luo W, Snead M L
Laboratory for Developmental Genetics, University of Southern California, Los Angeles 90089-0641, USA.
J Craniofac Genet Dev Biol. 1998 Apr-Jun;18(2):79-87.
It is well known that the process of branching morphogenesis requires epithelial-mesenchymal interactions. One outstanding model for the study of tissue interactions during branching morphogenesis is the embryonic mouse submandibular gland (SMG). Although it has been clearly demonstrated that the branching pattern is dependent on interactions between the epithelium and the surrounding mesenchyme, little is known about the molecular mechanism underlying the branching process. One group of transcription factors that likely participates in the control of epithelial-mesenchymal inductive interactions are the Msx-class of homeodomain-containing proteins. In this paper, we focus on Msx-2 because its developmental expression is correlated with inductive interactions, suggesting that Msx-2 may play a functional role during cell-cell interactions. We demonstrate the expression of Msx-2 mRNA and protein to be primarily in the branching epithelia with progressive embryonic (E13 to E15) SMG development and, to a lesser extent, in the mesenchyme. We also show that Msx-2 is expressed by embryonic SMG primordia cultured under defined conditions. In addition, to begin to delineate a functional role for Msx-2, we employed an experimental strategy by using exogenous glucocorticoid (CORT) treatment of embryonic SMGs in vitro and in vivo to significantly enhance branching morphogenesis and evaluate the effect of CORT treatment on embryonic SMG Msx-2 expression. A marked increase in Msx-2 transcripts and protein is detected with in vitro and in vivo CORT treatment. Our studies indicate that one mechanism of CORT regulation of salivary gland morphogenesis is likely through the modulation of Msx-2 gene expression.
众所周知,分支形态发生过程需要上皮-间充质相互作用。胚胎小鼠下颌下腺(SMG)是研究分支形态发生过程中组织相互作用的一个杰出模型。尽管已经清楚地证明分支模式依赖于上皮与周围间充质之间的相互作用,但对于分支过程背后的分子机制却知之甚少。一类可能参与上皮-间充质诱导相互作用控制的转录因子是含同源结构域的Msx家族蛋白。在本文中,我们聚焦于Msx-2,因为其发育表达与诱导相互作用相关,这表明Msx-2可能在细胞间相互作用中发挥功能作用。我们证明,随着胚胎(E13至E15)SMG的逐渐发育,Msx-2 mRNA和蛋白主要在上皮分支中表达,在间充质中的表达较少。我们还表明,在特定条件下培养的胚胎SMG原基可表达Msx-2。此外,为了开始阐明Msx-2的功能作用,我们采用了一种实验策略,即体外和体内使用外源性糖皮质激素(CORT)处理胚胎SMG,以显著增强分支形态发生,并评估CORT处理对胚胎SMG Msx-2表达的影响。体外和体内CORT处理均检测到Msx-2转录本和蛋白显著增加。我们的研究表明,CORT调节唾液腺形态发生的一种机制可能是通过调节Msx-2基因表达来实现的。