Department of Orthopaedics, Center for Musculoskeletal Research, University of Rochester School of Medicine, Rochester, New York 14642, USA.
J Orthop Res. 2010 Jan;28(1):89-95. doi: 10.1002/jor.20954.
Axis inhibition proteins 1 and 2 (Axin1 and Axin2) are scaffolding proteins that modulate at least two signaling pathways that are crucial in skeletogenesis: the Wnt/beta-catenin and TGF-beta signaling pathways. To determine whether Axin2 is important in skeletogenesis, we examined the skeletal phenotype of Axin2-null mice in a wild-type or Axin1(+/-) background. Animals with disrupted Axin2 expression displayed a runt phenotype when compared to heterozygous littermates. Whole-mount and tissue beta-galactosidase staining of Axin2(LacZ/LacZ) mice revealed that Axin2 is expressed in cartilage tissue, and histological sections from knockout animals showed shorter hypertrophic zones in the growth plate. Primary chondrocytes were isolated from Axin2-null and wild-type mice, cultured, and assayed for type X collagen gene expression. While type II collagen levels were depressed in cells from Axin2-deficient animals, type X collagen gene expression was enhanced. There was no difference in BrdU incorporation between null and heterozygous mice, suggesting that loss of Axin2 does not alter chondrocyte proliferation. Taken together, these findings reveal that disruption of Axin2 expression results in accelerated chondrocyte maturation. In the presence of a heterozygous deficiency of Axin1, Axin2 was also shown to play a critical role in craniofacial and axial skeleton development.
轴抑制蛋白 1 和 2(Axin1 和 Axin2)是支架蛋白,可调节至少两种在骨骼发生中至关重要的信号通路:Wnt/β-连环蛋白和 TGF-β信号通路。为了确定 Axin2 在骨骼发生中的重要性,我们在野生型或 Axin1(+/-)背景下检查了 Axin2 缺失小鼠的骨骼表型。与杂合子同窝仔相比,表达 Axin2 的动物表现出发育不良的表型。对 Axin2(LacZ/LacZ)小鼠进行全骨骼和组织β-半乳糖苷酶染色表明 Axin2 在软骨组织中表达,并且敲除动物的组织学切片显示生长板中的肥大区较短。从 Axin2 缺失和野生型小鼠中分离出原代软骨细胞,进行培养,并检测 X 型胶原基因的表达。虽然 Axin2 缺失动物的细胞中 II 型胶原水平降低,但 X 型胶原基因的表达增强。Axin2 缺失和杂合子小鼠之间的 BrdU 掺入没有差异,表明 Axin2 的缺失不会改变软骨细胞的增殖。综上所述,这些发现表明 Axin2 表达的破坏导致软骨细胞成熟加速。在 Axin1 杂合缺失的情况下,Axin2 也被证明在颅面和轴骨骼发育中发挥关键作用。