Haramis A G, Brown J M, Zeller R
EMBL, Heidelberg, Germany.
Development. 1995 Dec;121(12):4237-45. doi: 10.1242/dev.121.12.4237.
Mutations in the murine limb deformity (ld) gene disrupt differentiation of the Apical Ectodermal Ridge (AER) and patterning of distal limb structures. However, initial outgrowth of the limb bud is not affected, suggesting that early and late functions of the AER are uncoupled. Similarly, activation of the 5' members of the HoxD gene cluster (Hoxd-11 to Hoxd-13) is not affected in ld mutant posterior limb bud mesenchyme, but the subsequent anteriorization of 5' HoxD domains is delayed by about 12 hours and is associated with reduced levels of polarising activity. These results indicate that the ld gene products act upstream of 5' HoxD genes during patterning of the autopod. Expression of the signalling molecule Sonic hedgehog (Shh) in the posterior limb bud mesenchyme is initiated normally, but ceases prematurely indicating a defect in maintenance of Shh by the ld mutant AER. Furthermore, no Fgf-4 transcripts are detected in the ld mutant AER, whereas Fgf-8 transcripts remain expressed. However, Shh expression can be rescued by heterospecific grafting of ld mutant posterior mesenchyme under a wild-type chicken AER. These studies show that the AER defect in ld homozygous limb buds causes disruption of the FGF-4/SHH feedback loop and support the proposed essential role for FGF-4 in maintaining Shh expression during limb pattern formation.
小鼠肢体畸形(ld)基因的突变会破坏顶端外胚层嵴(AER)的分化以及远端肢体结构的模式形成。然而,肢芽的初始生长不受影响,这表明AER的早期和晚期功能是解偶联的。同样,HoxD基因簇5'成员(Hoxd-11至Hoxd-13)在ld突变体后肢芽间充质中的激活不受影响,但随后5'HoxD结构域的向前化延迟约12小时,并且与极化活性水平降低有关。这些结果表明,ld基因产物在 autopod模式形成过程中作用于5'HoxD基因的上游。信号分子 Sonic hedgehog(Shh)在后肢芽间充质中的表达正常启动,但过早停止,表明ld突变体AER对Shh的维持存在缺陷。此外,在ld突变体AER中未检测到Fgf-4转录本,而Fgf-8转录本仍有表达。然而,通过将ld突变体后间充质异种移植到野生型鸡AER下,可以挽救Shh的表达。这些研究表明,ld纯合肢体芽中的AER缺陷会导致FGF-4/SHH反馈回路的破坏,并支持FGF-4在肢体模式形成过程中维持Shh表达的重要作用。