Department of Medical Neurobiology, Institute of Medical Research Israel-Canada (IMRIC) and the Edmond and Lily Safra Center for Brain Sciences (ELSC), Hebrew University of Jerusalem-Hadassah Medical School, P.O. Box 12272, Jerusalem 9112102, Israel.
Int J Mol Sci. 2024 May 21;25(11):5602. doi: 10.3390/ijms25115602.
Derived from axial structures, Sonic Hedgehog (Shh) is secreted into the paraxial mesoderm, where it plays crucial roles in sclerotome induction and myotome differentiation. Through conditional loss-of-function in quail embryos, we investigate the timing and impact of Shh activity during early formation of sclerotome-derived vertebrae and ribs, and of lateral mesoderm-derived sternum. To this end, Hedgehog interacting protein (Hhip) was electroporated at various times between days 2 and 5. While the vertebral body and rib primordium showed consistent size reduction, rib expansion into the somatopleura remained unaffected, and the sternal bud developed normally. Additionally, we compared these effects with those of locally inhibiting BMP activity. Transfection of Noggin in the lateral mesoderm hindered sternal bud formation. Unlike Hhip, BMP inhibition via Noggin or Smad6 induced myogenic differentiation of the lateral dermomyotome lip, while impeding the growth of the myotome/rib complex into the somatic mesoderm, thus affirming the role of the lateral dermomyotome epithelium in rib guidance. Overall, these findings underscore the continuous requirement for opposing gradients of Shh and BMP activity in the morphogenesis of proximal and distal flank skeletal structures, respectively. Future research should address the implications of these early interactions to the later morphogenesis and function of the musculo-skeletal system and of possible associated malformations.
Shh 源自轴性结构,分泌到轴旁中胚层,在诱导体节和分化肌节中起关键作用。通过在鹌鹑胚胎中条件性丧失功能,我们研究了 Shh 活性在早期形成体节衍生的椎骨和肋骨以及侧中胚层衍生的胸骨中的时间和影响。为此,在第 2 天至第 5 天之间的不同时间点电转 Hedgehog 相互作用蛋白 (Hhip)。虽然椎体和肋骨原基的大小一致减小,但肋骨向体壁的扩张不受影响,胸骨芽正常发育。此外,我们将这些效应与局部抑制 BMP 活性的效应进行了比较。侧向中胚层中 Noggin 的转染阻碍了胸骨芽的形成。与 Hhip 不同,通过 Noggin 或 Smad6 抑制 BMP 诱导侧向真皮肌鞘唇的成肌分化,同时阻碍肌节/肋骨复合物向体壁中胚层生长,从而证实了侧向真皮肌鞘上皮在肋骨引导中的作用。总的来说,这些发现强调了 Shh 和 BMP 活性的相反梯度在近端和远端侧翼骨骼结构形态发生中的持续需求。未来的研究应该探讨这些早期相互作用对肌肉骨骼系统的后期形态发生和功能以及可能相关的畸形的影响。