Akiyama Haruhiko, Chaboissier Marie-Christine, Martin James F, Schedl Andreas, de Crombrugghe Benoit
Department of Molecular Genetics, The University of Texas M.D. Anderson Cancer Center, Houston, Texas 77030, USA.
Genes Dev. 2002 Nov 1;16(21):2813-28. doi: 10.1101/gad.1017802.
To examine whether the transcription factor Sox9 has an essential role during the sequential steps of chondrocyte differentiation, we have used the Cre/loxP recombination system to generate mouse embryos in which either Sox9 is missing from undifferentiated mesenchymal cells of limb buds or the Sox9 gene is inactivated after chondrogenic mesenchymal condensations. Inactivation of Sox9 in limb buds before mesenchymal condensations resulted in a complete absence of both cartilage and bone, but markers for the different axes of limb development showed a normal pattern of expression. Apoptotic domains within the developing limbs were expanded, suggesting that Sox9 suppresses apoptosis. Expression of Sox5 and Sox6, two other Sox genes involved in chondrogenesis, was no longer detected. Moreover, expression of Runx2, a transcription factor needed for osteoblast differentiation, was also abolished. Embryos, in which Sox9 was deleted after mesenchymal condensations, exhibited a severe generalized chondrodysplasia, similar to that in Sox5; Sox6 double-null mutant mice. Most cells were arrested as condensed mesenchymal cells and did not undergo overt differentiation into chondrocytes. Furthermore, chondrocyte proliferation was severely inhibited and joint formation was defective. Although Indian hedgehog, Patched1, parathyroid hormone-related peptide (Pthrp), and Pth/Pthrp receptor were expressed, their expression was down-regulated. Our experiments further suggested that Sox9 is also needed to prevent conversion of proliferating chondrocytes into hypertrophic chondrocytes. We conclude that Sox9 is required during sequential steps of the chondrocyte differentiation pathway.
为了研究转录因子Sox9在软骨细胞分化的连续步骤中是否发挥关键作用,我们利用Cre/loxP重组系统构建了小鼠胚胎,其中肢芽未分化间充质细胞中缺失Sox9,或者软骨形成间充质凝聚后Sox9基因被失活。间充质凝聚前肢芽中Sox9失活导致软骨和骨完全缺失,但肢发育不同轴的标志物显示出正常的表达模式。发育中肢体的凋亡区域扩大,提示Sox9抑制凋亡。另外两个参与软骨形成的Sox基因Sox5和Sox6的表达不再被检测到。此外,成骨细胞分化所需的转录因子Runx2的表达也被消除。间充质凝聚后Sox9被缺失的胚胎表现出严重的全身性软骨发育不良,类似于Sox5;Sox6双敲除突变小鼠。大多数细胞停滞为凝聚的间充质细胞,未明显分化为软骨细胞。此外,软骨细胞增殖受到严重抑制,关节形成存在缺陷。尽管印度刺猬因子、patched1、甲状旁腺激素相关肽(Pthrp)和Pth/Pthrp受体表达,但它们的表达下调。我们的实验进一步表明,Sox9对于防止增殖软骨细胞转化为肥大软骨细胞也是必需的。我们得出结论,在软骨细胞分化途径的连续步骤中需要Sox9。