间充质
肢芽
软骨发生
硫氧化物9
生物
肢体发育
间充质干细胞
极化活动区
细胞生物学
中胚层
异位表达
解剖
转录因子
外胚层
胚胎
遗传学
胚胎发生
胚胎干细胞
基因
作者
Haruhiko Akiyama,H. Scott Stadler,James F. Martin,Takahiro Ishii,Philip A. Beachy,Takashi Nakamura,Benoít de Crombrugghe
出处
期刊:Matrix Biology
[Elsevier]
日期:2007-05-01
卷期号:26 (4): 224-233
被引量:53
标识
DOI:10.1016/j.matbio.2006.12.002
摘要
Our previous studies have demonstrated the essential roles of the transcription factor Sox9 in the commitment of mesenchymal cells to a chondrogenic cell lineage and in overt chondrogenesis during limb bud development. However, it remains unknown if Sox9 induces chondrogenesis in mesenchyme ectopically in vivo as a master regulator of chondrogenesis. In this study, we first generated mutant mice in which Sox9 was misexpressed in the limb bud mesenchyme. The mutant mouse embryos exhibited polydactyly in limb buds in association with ectopic expression of Sox5 and Sox6 although markers for the different axes of limb bud development showed a normal pattern of expression. Misexpression of Sox9 stimulated cell proliferation in limb bud mesenchyme, suggesting that Sox9 has a role in recruiting mesenchymal cells to mesenchymal condensation. Second, despite the facts that misexpression of Sonic hedgehog (Shh) induces polydactyly in a number of mutant mice and Shh-null mutants have severely defective cartilage elements in limb buds, misexpression of Sox9 did not restore limb bud phenotypes in Shh-null mutants. Rather, there was no expression of Sox9 in digit I of Hoxa13Hd mutant embryos, and Sox9 partially rescued hypodactyly in Hoxa13Hd mutant embryos. These results provide evidence that Sox9 induces ectopic chondrogenesis in mesenchymal cells and strongly suggest that its expression may be regulated by Hox genes during limb bud development.
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