Dealy C N, Seghatoleslami M R, Ferrari D, Kosher R A
Department of Anatomy, University of Connecticut Health Center, Farmington 06030, USA.
Dev Biol. 1997 Apr 15;184(2):343-50. doi: 10.1006/dbio.1997.8525.
The outgrowth of the mesoderm of the developing limb bud in response to the apical ectodermal ridge (AER) is mediated at least in part by members of the FGF family. Recent studies have indicated that FGFs need to interact with heparan sulfate proteoglycans in order to bind to and activate their specific cell surface receptors. Syndecan-3 is an integral membrane heparan sulfate proteoglycan that is highly expressed by the distal mesodermal cells of the chick limb bud that are undergoing proliferation and outgrowth in response to the AER. Here we report that maintenance of high-level syndecan-3 expression by the subridge mesoderm of the chick limb bud is directly or indirectly dependent on the AER, since its expression is severely impaired in the distal mesoderm of the limb buds of limbless and wingless mutant embryos which lack functional AERs capable of directing the outgrowth of limb mesoderm. We have also found that exogenous FGF-2 maintains a domain of high-level syndecan-3 expression in the outgrowing mesodermal cells of explants of the posterior mesoderm of normal limb buds cultured in the absence of the AER and in the outgrowing subapical mesoderm of explants of limbless mutant limb buds which lack a functional AER. These results suggest that the domain of high-level syndecan-3 expression in the subridge mesoderm of normal limb buds is maintained by FGFs produced by the AER. Finally, we report that polyclonal antibodies against a syndecan-3 fusion protein inhibit the ability of FGF-2 to promote the proliferation and outgrowth of the posterior subridge mesoderm of limb buds cultured in the absence of the AER. These results suggest that syndecan-3 plays an essential role in limb outgrowth by mediating the interaction of FGFs produced by the AER with the underlying mesoderm of the limb bud.
发育中的肢芽中胚层响应顶端外胚层嵴(AER)而发生的生长至少部分是由FGF家族成员介导的。最近的研究表明,FGF需要与硫酸乙酰肝素蛋白聚糖相互作用,才能结合并激活其特定的细胞表面受体。Syndecan-3是一种整合膜硫酸乙酰肝素蛋白聚糖,在鸡胚肢芽的远端中胚层细胞中高度表达,这些细胞正响应AER进行增殖和生长。在此我们报告,鸡胚肢芽嵴下中胚层维持高水平的syndecan-3表达直接或间接依赖于AER,因为在无肢和无翅突变胚胎的肢芽远端中胚层中其表达严重受损,这些突变胚胎缺乏能够指导肢芽中胚层生长的功能性AER。我们还发现,外源性FGF-2在无AER条件下培养的正常肢芽后中胚层外植体的生长中的中胚层细胞以及缺乏功能性AER的无肢突变肢芽外植体的生长中的顶端下中胚层中维持高水平的syndecan-3表达区域。这些结果表明,正常肢芽嵴下中胚层中高水平的syndecan-3表达区域是由AER产生的FGF维持的。最后,我们报告,针对syndecan-3融合蛋白的多克隆抗体抑制FGF-2促进在无AER条件下培养的肢芽后嵴下中胚层增殖和生长的能力。这些结果表明,syndecan-3通过介导AER产生的FGF与肢芽下方中胚层的相互作用在肢芽生长中起重要作用。