Department of Biochemistry, Yonsei University College of Life Science and Biotechnology, 262 Seongsanno Seodaemoon-Gu, Seoul, 120-749, Republic of Korea.
Biochem J. 2012 May 1;443(3):789-98. doi: 10.1042/BJ20112062.
The Ihh (Indian Hedgehog) pathway plays an essential role in facilitating chondrocyte hypertrophy and bone formation during skeletal development. Nkx3.2 (NK3 homeobox 2) is initially induced in chondrocyte precursor cells, maintained in early-stage chondrocytes and down-regulated in terminal-stage chondrocytes. Consistent with these expression patterns, Nkx3.2 has been shown to enhance chondrocyte differentiation and cell survival, while inhibiting chondrocyte hypertrophy and apoptosis. Thus, in the present study, we investigated whether Nkx3.2, an early-stage chondrogenic factor, can be regulated by Ihh, a key regulator for chondrocyte hypertrophy. We show that Ihh signalling can induce proteasomal degradation of Nkx3.2. In addition, we found that Ihh can suppress levels of Lrp (low-density-lipoprotein-receptor-related protein) (Wnt co-receptor) and Sfrp (secreted frizzled-related protein) (Wnt antagonist) expression, which, in turn, may selectively enhance Lrp-independent non-canonical Wnt pathways in chondrocytes. In agreement with these findings, Ihh-induced Nkx3.2 degradation requires Wnt5a, which is capable of triggering Nkx3.2 degradation. Finally, we found that Nkx3.2 protein levels in chondrocytes are remarkably elevated in mice defective in Ihh signalling by deletion of either Ihh or smoothened. Thus these results suggest that Ihh/Wnt5a signalling may play a role in negative regulation of Nkx3.2 for appropriate progression of chondrocyte hypertrophy during chondrogenesis.
Ihh(印度刺猬)通路在骨骼发育过程中促进软骨细胞肥大和骨形成中发挥重要作用。 NK3 同源盒 2(NK3 homeobox 2,Nkx3.2)最初在软骨细胞前体细胞中诱导,在早期软骨细胞中维持,并在终末期软骨细胞中下调。与这些表达模式一致,Nkx3.2 已被证明可增强软骨细胞分化和细胞存活,同时抑制软骨细胞肥大和凋亡。因此,在本研究中,我们研究了早期软骨形成因子 Nkx3.2 是否可以受 Ihh 调节,Ihh 是软骨细胞肥大的关键调节因子。我们表明 Ihh 信号可以诱导 Nkx3.2 的蛋白酶体降解。此外,我们发现 Ihh 可以抑制 Lrp(低密度脂蛋白受体相关蛋白)(Wnt 共受体)和 Sfrp(分泌卷曲相关蛋白)(Wnt 拮抗剂)的水平表达,这反过来又可能选择性地增强软骨细胞中 Lrp 非依赖性非经典 Wnt 途径。与这些发现一致,Ihh 诱导的 Nkx3.2 降解需要 Wnt5a,Wnt5a 能够触发 Nkx3.2 降解。最后,我们发现通过删除 Ihh 或 smoothened 使 Ihh 信号传导有缺陷的小鼠中软骨细胞中的 Nkx3.2 蛋白水平显着升高。因此,这些结果表明 Ihh/Wnt5a 信号可能在适当的软骨细胞肥大过程中对 Nkx3.2 的负调控中发挥作用。