Dean Charlotte, Ito Masataka, Makarenkova Helen P, Faber Sonya C, Lang Richard A
Divisions of Developmental Biology and Ophthalmology, Children's Hospital Research Foundation, 3333 Burnet Avenue, Cincinnati, OH 45229, USA.
Development. 2004 Sep;131(17):4155-65. doi: 10.1242/dev.01285. Epub 2004 Jul 27.
The lacrimal gland provides an excellent model with which to study the epithelial-mesenchymal interactions that are crucial to the process of branching morphogenesis. In the current study, we show that bone morphogenetic protein 7 (Bmp7) is expressed with a complex pattern in the developing gland and has an important role in regulating branching. In loss-of-function analyses, we find that Bmp7-null mice have distinctive reductions in lacrimal gland branch number, and that inhibition of Bmp activity in gland explant cultures has a very similar consequence. Consistent with this, exposure of whole-gland explants to recombinant Bmp7 results in increased branch number. In determining which cells of the gland respond directly to Bmp7, we have tested isolated mesenchyme and epithelium. We find that, as expected, Bmp4 can suppress bud extension in isolated epithelium stimulated by Fgf10, but interestingly, Bmp7 has no discernible effect. Bmp7 does, however, stimulate a distinct response in mesenchymal cells. This manifests as a promotion of cell division and formation of aggregates, and upregulation of cadherin adhesion molecules, the junctional protein connexin 43 and of alpha-smooth muscle actin. These data suggest that in this branching system, mesenchyme is the primary target of Bmp7 and that formation of mesenchymal condensations characteristic of signaling centers may be enhanced by Bmp7. Based on the activity of Bmp7 in promoting branching, we also propose a model suggesting that a discrete region of Bmp7-expressing head mesenchyme may be crucial in determining the location of the exorbital lobe of the gland.
泪腺为研究上皮-间充质相互作用提供了一个绝佳模型,这种相互作用对分支形态发生过程至关重要。在本研究中,我们发现骨形态发生蛋白7(Bmp7)在发育中的腺体中呈复杂模式表达,并且在调节分支方面发挥重要作用。在功能丧失分析中,我们发现Bmp7基因敲除小鼠的泪腺分支数量明显减少,并且在腺体外植体培养物中抑制Bmp活性也会产生非常相似的结果。与此一致的是,将全腺体外植体暴露于重组Bmp7会导致分支数量增加。在确定腺体中哪些细胞直接对Bmp7作出反应时,我们测试了分离的间充质和上皮。我们发现,正如预期的那样,Bmp4可以抑制由Fgf10刺激的分离上皮中的芽延伸,但有趣的是,Bmp7没有明显作用。然而,Bmp7确实会在间充质细胞中引发明显反应。这表现为促进细胞分裂和聚集体形成,以及钙黏着蛋白黏附分子、连接蛋白连接蛋白43和α-平滑肌肌动蛋白的上调。这些数据表明,在这个分支系统中,间充质是Bmp7的主要靶点,并且Bmp7可能会增强信号中心特有的间充质凝聚物的形成。基于Bmp7在促进分支方面的活性,我们还提出了一个模型,表明表达Bmp7的头部间充质的一个离散区域可能在确定腺体眶外叶的位置方面至关重要。