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成纤维细胞生长因子(FGFs)和骨形态发生蛋白(BMPs)在鸡下颌骨形态发生中的区域和阶段特异性作用。

Region- and stage-specific effects of FGFs and BMPs in chick mandibular morphogenesis.

作者信息

Mina Mina, Wang Yu-Hsing, Ivanisevic Ana-Maria, Upholt William B, Rodgers Barbara

机构信息

Department of Pediatric Dentistry, School of Dental Medicine, University of Connecticut Health Center, Farmington, CT 06030, USA.

出版信息

Dev Dyn. 2002 Mar;223(3):333-52. doi: 10.1002/dvdy.10056.

Abstract

The mandibular processes are specified as at least two independent functional regions: two large lateral regions where morphogenesis is dependent on fibroblast growth factor (FGF)-8 signaling, and a small medial region where morphogenesis is independent of FGF-8 signaling. To gain insight into signaling pathways that may be involved in morphogenesis of the medial region, we have examined the roles of pathways regulated by FGFs and bone morphogenetic proteins (BMPs) in morphogenesis of the medial and lateral regions of the developing chick mandible. Our results show that, unlike in the lateral region, the proliferation and growth of the mesenchyme in the medial region is dependent on signals derived from the overlying epithelium. We also show that medial and lateral mandibular mesenchyme respond differently to exogenous FGFs and BMPs. FGF-2 and FGF-4 can mimic many of the effects of mandibular epithelium from the medial region, including supporting the expression of Msx genes, outgrowth of the mandibular processes and elongation of Meckel's cartilage. On the other hand, laterally placed FGF beads did not induce ectopic expression of Msx genes and did not affect the growth of the mandibular processes. These functional studies, together with our tissue distribution studies, suggest that FGF-mediated signaling (other than FGF-8), through interactions with FGF receptor-2 and downstream target genes including Msx genes, is part of the signaling pathway that mediates the growth-promoting interactions in the medial region of the developing mandible. Our observations also suggest that BMPs play multiple stage- and region-specific roles in mandibular morphogenesis. In this study, we show that exogenous BMP-7 applied to the lateral region at early stages of development (stage 20) caused apoptosis, ectopic expression of Msx genes, and inhibited outgrowth of the mandibular processes and the formation of Meckel's cartilage. Our additional experiments suggest that the differences between the effects of BMP-7 on lateral mandibular mesenchyme at stage 20 and previously reported results at stage 23 (Wang et al., [1999] Dev. Dyn. 216:320-335) are related to differences in stages of differentiation in that BMP-7 promotes apoptosis in undifferentiated lateral mandibular mesenchyme, whereas it promotes chondrogenesis at later stages of development. We also showed that, unlike mandibular epithelium and medially placed FGF beads, medially placed BMP-7 did not support outgrowth of the isolated mesenchyme and at stage 20 induced the formation of a duplicated rod of cartilage extending from the body of Meckel's cartilage. These observations suggest that BMPs do not play essential roles in growth-promoting interactions in the medial region of the developing mandible. However, BMP-mediated signaling is a part of the signaling pathways regulating chondrogenesis of the mandibular mesenchyme.

摘要

下颌突被确定为至少两个独立的功能区域

两个大的外侧区域,其形态发生依赖于成纤维细胞生长因子(FGF)-8信号传导;以及一个小的内侧区域,其形态发生独立于FGF-8信号传导。为了深入了解可能参与内侧区域形态发生的信号通路,我们研究了FGF和骨形态发生蛋白(BMP)调控的信号通路在发育中的鸡下颌内侧和外侧区域形态发生中的作用。我们的结果表明,与外侧区域不同,内侧区域间充质的增殖和生长依赖于来自上方上皮的信号。我们还表明,下颌内侧和外侧间充质对外源FGF和BMP的反应不同。FGF-2和FGF-4可以模拟内侧区域下颌上皮的许多作用,包括支持Msx基因的表达、下颌突的生长和Meckel软骨的延长。另一方面,外侧放置的FGF珠未诱导Msx基因的异位表达,也不影响下颌突的生长。这些功能研究以及我们的组织分布研究表明,FGF介导的信号传导(FGF-8除外)通过与FGF受体-2和包括Msx基因在内的下游靶基因相互作用,是介导发育中的下颌内侧区域生长促进相互作用的信号通路的一部分。我们的观察结果还表明,BMP在下颌形态发生中发挥多种阶段和区域特异性作用。在本研究中,我们表明在发育早期(第20阶段)将外源性BMP-7应用于外侧区域会导致细胞凋亡、Msx基因的异位表达,并抑制下颌突的生长和Meckel软骨的形成。我们的额外实验表明,BMP-7在第20阶段对下颌外侧间充质的作用与之前在第23阶段报道的结果(Wang等人,[1999]《发育动力学》216:320 - 335)之间的差异与分化阶段的差异有关,即BMP-7在未分化的下颌外侧间充质中促进细胞凋亡,而在发育后期促进软骨形成。我们还表明,与下颌上皮和内侧放置的FGF珠不同,内侧放置的BMP-7不支持分离的间充质生长,并且在第20阶段诱导形成从Meckel软骨体延伸的重复软骨棒。这些观察结果表明,BMP在发育中的下颌内侧区域的生长促进相互作用中不发挥重要作用。然而,BMP介导的信号传导是调节下颌间充质软骨形成的信号通路的一部分。

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