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外胚层-间充质和间充质-间充质相互作用调节小鼠肢芽中Msx-1的表达和细胞分化。

Ectoderm-mesenchyme and mesenchyme-mesenchyme interactions regulate Msx-1 expression and cellular differentiation in the murine limb bud.

作者信息

Wang Y, Sassoon D

机构信息

Department of Biochemistry, Boston University School of Medicine, Massachusetts 02118, USA.

出版信息

Dev Biol. 1995 Apr;168(2):374-82. doi: 10.1006/dbio.1995.1087.

Abstract

The apical ectodermal ridge (AER) is a specialized thickening of the distal limb mesenchyme that has been demonstrated to support limb outgrowth and proper limb development. The homeobox gene, Msx-1, is associated with the distal limb mesenchyme (progress zone) and its expression depends upon the presence of the AER in chick limbs. We demonstrate here that the expression of Msx-1 is dependent upon the limb ectoderm in the mouse, but that the inductive capacity of murine limb ectoderm is not restricted to the AER. Msx-1 can also be maintained in limb mesenchyme by the substitution of FGF 4 for the ectoderm; however, we see that local cell-cell interactions are required for high levels of expression. Disruption of cell-cell interactions in the limb mesenchyme results in a dramatic decrease in Msx-1 levels and a precocious expression of MyoD1, suggesting that the limb environment represses differentiation and promotes cell proliferation during early development. BMP 4 and FGF 2 can also maintain Msx-1 expression in limb mesenchyme as well as retinoic acid which is usually associated with polarizing activity in the early limb. Msx-2 expression does not appear to be dependent upon cell-cell interactions as measured in these experiments. Taken together, our data suggest that the expression of Msx-1, but not Msx-2, not only requires factors from the limb ectoderm, but also relies upon cues from local cell interactions and that the spatial distribution of inductive capacities in limb ectoderm differs between the avian and murine systems.

摘要

顶端外胚层嵴(AER)是远端肢体间充质的一种特殊增厚结构,已被证明可支持肢体生长和正常的肢体发育。同源框基因Msx - 1与远端肢体间充质(进展区)相关,其表达取决于鸡肢体中AER的存在。我们在此证明,Msx - 1的表达在小鼠中依赖于肢体外胚层,但小鼠肢体外胚层的诱导能力并不局限于AER。通过用FGF 4替代外胚层,Msx - 1也可在肢体间充质中维持表达;然而,我们发现高水平表达需要局部细胞间相互作用。肢体间充质中细胞间相互作用的破坏导致Msx - 1水平显著降低和MyoD1的早熟表达,这表明在早期发育过程中肢体环境抑制分化并促进细胞增殖。BMP 4和FGF 2以及通常与早期肢体极化活性相关的视黄酸也可在肢体间充质中维持Msx - 1的表达。在这些实验中测量的Msx - 2表达似乎不依赖于细胞间相互作用。综上所述,我们的数据表明,Msx - 1而非Msx - 2的表达不仅需要来自肢体外胚层的因子,还依赖于局部细胞相互作用的信号,并且肢体外胚层诱导能力的空间分布在鸟类和小鼠系统之间存在差异。

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