Barrionuevo Francisco, Taketo Makoto M, Scherer Gerd, Kispert Andreas
Institute of Human Genetics and Anthropology, University of Freiburg, D-79106 Freiburg, Germany.
Dev Biol. 2006 Jul 1;295(1):128-40. doi: 10.1016/j.ydbio.2006.03.014. Epub 2006 May 6.
Sox9 encodes a HMG-box transcription factor that has been implicated in numerous developmental processes including chondrogenesis, formation of cardiac valves, and neural crest, testis and spinal cord development. Here we show that Sox9 is expressed in the notochord and the sclerotome during mouse development suggesting that the gene may play additional roles in the development of the axial skeleton. We used ubiquitous mosaic inactivation of a conditional Sox9 allele by Cre/loxP-mediated recombination in the mouse to screen for novel functions of Sox9, and revealed that its absence results in severe malformations of the vertebral column. Besides its established role in chondrogenesis, Sox9 is required for maintaining the structural integrity of the notochord. Mutant embryos establish a normal notochord; however, starting from E9.5, the notochord disintegrates in a cranial to caudal manner. The late requirement in notochord development uncovered a function of notochord-derived signals in inducing segmentation of the ventral sclerotome and chondrogenesis. Thus, Sox9 is required for axial skeletogenesis by regulating notochord survival and chondrogenesis.
Sox9编码一种HMG盒转录因子,它参与了许多发育过程,包括软骨形成、心脏瓣膜形成、神经嵴、睾丸和脊髓发育。在这里,我们表明Sox9在小鼠发育过程中在脊索和体节中表达,这表明该基因可能在轴向骨骼发育中发挥额外作用。我们通过在小鼠中利用Cre/loxP介导的重组对条件性Sox9等位基因进行普遍的镶嵌失活,以筛选Sox9的新功能,并发现其缺失会导致脊柱严重畸形。除了其在软骨形成中已确定的作用外,Sox9对于维持脊索的结构完整性也是必需的。突变胚胎形成正常的脊索;然而,从E9.5开始,脊索以从头部到尾部的方式解体。脊索发育后期的需求揭示了脊索衍生信号在诱导腹侧体节分割和软骨形成中的作用。因此,Sox9通过调节脊索存活和软骨形成来参与轴向骨骼发生。