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Bmp-4与Msx-1之间的相互作用可将基因表达限制于牙源性间充质。

Interactions between Bmp-4 and Msx-1 act to restrict gene expression to odontogenic mesenchyme.

作者信息

Tucker A S, Al Khamis A, Sharpe P T

机构信息

Department of Craniofacial Development, Guy's Hospital, London, United Kingdom.

出版信息

Dev Dyn. 1998 Aug;212(4):533-9. doi: 10.1002/(SICI)1097-0177(199808)212:4<533::AID-AJA6>3.0.CO;2-I.

Abstract

Tooth development is regulated by a reciprocal series of epithelial-mesenchymal interactions. Bmp4 has been identified as a candidate signalling molecule in these interactions, initially as an epithelial signal and then later at the bud stage as a mesenchymal signal (Vainio et al. [1993] Cell 75:45-58). A target gene for Bmp4 signalling is the homeobox gene Msx-1, identified by the ability of recombinant Bmp4 protein to induce expression in mesenchyme. There is, however, no evidence that Bmp4 is the endogenous inducer of Msx-1 expression. Msx-1 and Bmp-4 show dynamic, interactive patterns of expression in oral epithelium and ectomesenchyme during the early stages of tooth development. In this study, we compare the temporal and spatial expression of these two genes to determine whether the changing expression patterns of these genes are consistent with interactions between the two molecules. We show that changes in Bmp-4 expression precede changes in Msx-1 expression. At embryonic day (E)10.5-E11.0, expression patterns are consistent with BMP4 from the epithelium, inducing or maintaining Msx-1 in underlying mesenchyme. At E11.5, Bmp-4 expression shifts from epithelium to mesenchyme and is rapidly followed by localised up-regulation of Msx-1 expression at the sites of Bmp-4 expression. Using cultured explants of developing mandibles, we confirm that exogenous BMP4 is capable of replacing the endogenous source in epithelium and inducing Msx-1 gene expression in mesenchyme. By using noggin, a BMP inhibitor, we show that endogenous Msx-1 expression can be inhibited at E10.5 and E11.5, providing the first evidence that endogenous Bmp-4 from the epithelium is responsible for regulating the early spatial expression of Msx-1. We also show that the mesenchymal shift in Bmp-4 is responsible for up-regulating Msx-1 specifically at the sites of future tooth formation. Thus, we establish that a reciprocal series of interactions act to restrict expression of both genes to future sites of tooth formation, creating a positive feedback loop that maintains expression of both genes in tooth mesenchymal cells.

摘要

牙齿发育受一系列上皮-间充质相互作用的调控。Bmp4已被确定为这些相互作用中的候选信号分子,最初是作为上皮信号,随后在芽期作为间充质信号(Vainio等人,[1993]《细胞》75:45-58)。Bmp4信号的一个靶基因是同源盒基因Msx-1,它是通过重组Bmp4蛋白在间充质中诱导表达的能力而被鉴定出来的。然而,没有证据表明Bmp4是Msx-1表达的内源性诱导物。在牙齿发育的早期阶段,Msx-1和Bmp-4在口腔上皮和外胚间充质中呈现动态的、相互作用的表达模式。在本研究中,我们比较这两个基因的时空表达,以确定这些基因表达模式的变化是否与这两种分子之间的相互作用一致。我们发现Bmp-4表达的变化先于Msx-1表达的变化。在胚胎第(E)10.5-E11.0天,表达模式与来自上皮的BMP4一致,诱导或维持其下方间充质中的Msx-1表达。在E11.5时,Bmp-4表达从上皮转移到间充质,随后在Bmp-4表达位点Msx-1表达迅速出现局部上调。使用发育中的下颌骨培养外植体,我们证实外源性BMP4能够替代上皮中的内源性来源并诱导间充质中的Msx-1基因表达。通过使用BMP抑制剂noggin,我们表明在E10.5和E11.5时内源性Msx-1表达可被抑制,这首次证明来自上皮的内源性Bmp-4负责调节Msx-1的早期空间表达。我们还表明Bmp-4的间充质转移负责在未来牙齿形成部位特异性上调Msx-1。因此,我们确定一系列相互作用将这两个基因的表达限制在未来牙齿形成部位,形成一个正反馈环,维持这两个基因在牙齿间充质细胞中的表达。

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