Mansouri A, Voss A K, Thomas T, Yokota Y, Gruss P
Max-Planck Institute for Biophysical Chemistry, Department of Molecular Cell Biology, Am Fassberg 11, D-37077 Göttingen, Germany.
Development. 2000 Jun;127(11):2251-8. doi: 10.1242/dev.127.11.2251.
The expression of the homeobox gene Uncx4.1 in the somite is restricted to the caudal half of the newly formed somite and sclerotome. Here we show that mice with a targeted mutation of the Uncx4.1 gene exhibit defects in the axial skeleton and ribs. In the absence of Uncx4.1, pedicles of the neural arches and proximal ribs are not formed. In addition, dorsal root ganglia are disorganized. Histological and marker analysis revealed that Uncx4.1 is not necessary for somite segmentation. It is required to maintain the condensation of the caudal half-sclerotome, from which the missing skeletal elements are derived. The loss of proximal ribs in Pax1/Pax9 double mutants and the data presented here argue for a role of Uncx4.1 upstream of Pax9 in the caudolateral sclerotome. Our results further indicate that Uncx4.1 may be involved in the differential cell adhesion properties of the somite.
同源框基因Uncx4.1在体节中的表达局限于新形成体节和硬骨节的后半部分。在此我们表明,具有Uncx4.1基因靶向突变的小鼠在轴向骨骼和肋骨方面表现出缺陷。在缺乏Uncx4.1的情况下,神经弓的椎弓根和近端肋骨无法形成。此外,背根神经节排列紊乱。组织学和标记分析表明,Uncx4.1对于体节分割并非必需。它是维持后半部分硬骨节凝聚所必需的,缺失的骨骼元素正是从这里衍生而来。Pax1/Pax9双突变体中近端肋骨的缺失以及此处呈现的数据表明,Uncx4.1在尾外侧硬骨节中位于Pax9上游发挥作用。我们的结果进一步表明,Uncx4.1可能参与了体节不同的细胞黏附特性。