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Msx-2在后肢芽中胚层的异位表达会损害肢体形态发生,同时诱导BMP-4表达、抑制细胞增殖并促进细胞凋亡。

Ectopic expression of Msx-2 in posterior limb bud mesoderm impairs limb morphogenesis while inducing BMP-4 expression, inhibiting cell proliferation, and promoting apoptosis.

作者信息

Ferrari D, Lichtler A C, Pan Z Z, Dealy C N, Upholt W B, Kosher R A

机构信息

Department of Anatomy, School of Medicine, University of Connecticut Health Center, Farmington, Connecticut 06030, USA.

出版信息

Dev Biol. 1998 May 1;197(1):12-24. doi: 10.1006/dbio.1998.8880.

Abstract

During early stages of chick limb development, the homeobox-containing gene Msx-2 is expressed in the mesoderm at the anterior margin of the limb bud and in a discrete group of mesodermal cells at the midproximal posterior margin. These domains of Msx-2 expression roughly demarcate the anterior and posterior boundaries of the progress zone, the highly proliferating posterior mesodermal cells underneath the apical ectodermal ridge (AER) that give rise to the skeletal elements of the limb and associated structures. Later in development as the AER loses its activity, Msx-2 expression expands into the distal mesoderm and subsequently into the interdigital mesenchyme which demarcates the developing digits. The domains of Msx-2 expression exhibit considerably less proliferation than the cells of the progress zone and also encompass several regions of programmed cell death including the anterior and posterior necrotic zones and interdigital mesenchyme. We have thus suggested that Msx-2 may be in a regulatory network that delimits the progress zone by suppressing the morphogenesis of the regions of the limb mesoderm in which it is highly expressed. In the present study we show that ectopic expression of Msx-2 via a retroviral expression vector in the posterior mesoderm of the progress zone from the time of initial formation of the limb bud severely impairs limb morphogenesis. Msx-2-infected limbs are typically very narrow along the anteroposterior axis, are occasionally truncated, and exhibit alterations in the pattern of formation of skeletal elements, indicating that as a consequence of ectopic Msx-2 expression the morphogenesis of large portions of the posterior mesoderm has been suppressed. We further show that Msx-2 impairs limb morphogenesis by reducing cell proliferation and promoting apoptosis in the regions of the posterior mesoderm in which it is ectopically expressed. The domains of ectopic Msx-2 expression in the posterior mesoderm also exhibit ectopic expression of BMP-4, a secreted signaling molecule that is coexpressed with Msx-2 during normal limb development in the anterior limb mesoderm, the posterior necrotic zone, and interdigital mesenchyme. This indicates that Msx-2 regulates BMP-4 expression and that the suppressive effects of Msx-2 on limb morphogenesis might be mediated in part by BMP-4. These studies indicate that during normal limb development Msx-2 is a key component of a regulatory network that delimits the boundaries of the progress zone by suppressing the morphogenesis of the regions of the limb mesoderm in which it is highly expressed, thus restricting the outgrowth and formation of skeletal elements and associated structures to the progress zone. We also report that rather large numbers of apoptotic cells as well as proliferating cells are present throughout the AER during all stages of normal limb development we have examined, indicating that many of the cells of the AER are continuously undergoing programmed cell death at the same time that new AER cells are being generated by cell proliferation. Thus, a balance between cell proliferation and programmed cell death may play a very important role in maintaining the activity of the AER.

摘要

在鸡胚肢体发育的早期阶段,含同源异型框的基因Msx - 2在肢体芽前端边缘的中胚层以及近中段后端边缘的一组离散的中胚层细胞中表达。Msx - 2的这些表达区域大致划定了进展区的前后边界,进展区是位于顶端外胚层嵴(AER)下方高度增殖的后中胚层细胞,这些细胞产生肢体的骨骼元素及相关结构。在发育后期,随着AER失去活性,Msx - 2的表达扩展到远侧中胚层,随后进入界定发育中趾的趾间间充质。Msx - 2的表达区域的增殖程度明显低于进展区的细胞,并且还包括几个程序性细胞死亡区域,包括前后坏死区和趾间间充质。因此,我们认为Msx - 2可能处于一个调控网络中,通过抑制其高表达的肢体中胚层区域的形态发生来界定进展区。在本研究中,我们表明,从肢体芽最初形成时起,通过逆转录病毒表达载体在进展区的后中胚层中异位表达Msx - 2会严重损害肢体形态发生。感染Msx - 2的肢体通常在前后轴上非常狭窄,偶尔会出现截断,并表现出骨骼元素形成模式的改变,这表明由于Msx - 2的异位表达,大部分后中胚层的形态发生受到了抑制。我们进一步表明,Msx - 2通过减少其异位表达的后中胚层区域的细胞增殖并促进细胞凋亡来损害肢体形态发生。后中胚层中异位Msx - 2表达区域还表现出BMP - 4的异位表达,BMP - 4是一种分泌性信号分子,在正常肢体发育过程中,它与Msx - 2在前肢中胚层、后坏死区和趾间间充质中共同表达。这表明Msx - 2调节BMP - 4的表达,并且Msx - 2对肢体形态发生的抑制作用可能部分由BMP - 4介导。这些研究表明,在正常肢体发育过程中,Msx - 2是调控网络的关键组成部分,该网络通过抑制其高表达的肢体中胚层区域的形态发生来界定进展区的边界,从而将骨骼元素及相关结构的生长和形成限制在进展区内。我们还报告说,在我们检查的正常肢体发育的所有阶段,整个AER中都存在大量凋亡细胞以及增殖细胞,这表明许多AER细胞在通过细胞增殖产生新的AER细胞的同时,也在不断经历程序性细胞死亡。因此,细胞增殖和程序性细胞死亡之间的平衡可能在维持AER的活性中发挥非常重要的作用。

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