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Cyp26b1 的基因缺失通过抑制软骨形成而对肢体骨骼发生产生负面影响。

Genetic deletion of Cyp26b1 negatively impacts limb skeletogenesis by inhibiting chondrogenesis.

机构信息

Biomedical Research Centre, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.

出版信息

J Cell Sci. 2011 Aug 15;124(Pt 16):2723-34. doi: 10.1242/jcs.084699.

Abstract

Cyp26b1, a retinoic acid (RA)-metabolising enzyme, is expressed in the developing limb bud, and Cyp26b1(-/-) mice present with severe limb defects. These malformations might be attributable to an RA-induced patterning defect; however, recent reports suggest that RA is dispensable for limb patterning. In this study, we examined the role of endogenous retinoid signalling in skeletogenesis using Cyp26b1(-/-) mice and transgenic mice in which Cyp26b1 is conditionally deleted under control of the Prrx1 promoter beginning at ~E9.5 (Prrx1Cre(+)/Cyp26b1(fl/fl)). We found that the limb phenotype in Prrx1Cre(+)/Cyp26b1(fl/fl) mice was less severe than that observed in Cyp26b1(-/-) animals and that a change in retinoid signalling contributed to the difference in phenotypes. We systematically examined the role of endogenous RA signalling in chondrogenesis and found that Cyp26b1(-/-) cells and limb mesenchymal cells treated with a CYP inhibitor, are maintained in a pre-chondrogenic state, exhibit reduced chondroblast differentiation and have modestly accelerated chondrocyte hypertrophy. Furthermore, Cyp26b1(-/-) mesenchyme exhibited an increase in expression of genes in a closely related tendogenic lineage, indicating that retinoid signals in the limb interfere with differentiation and maintain progenitor status. Together, these findings support an important function for RA in regulating the behaviour of mesenchymal progenitors, and their subsequent differentiation and maturation.

摘要

Cyp26b1 是一种视黄酸(RA)代谢酶,在发育中的肢芽中表达,而 Cyp26b1(-/-)小鼠则表现出严重的肢缺陷。这些畸形可能归因于 RA 诱导的模式缺陷;然而,最近的报道表明 RA 对于肢体模式形成是可有可无的。在这项研究中,我们使用 Cyp26b1(-/-)小鼠和 Cyp26b1 受 Prrx1 启动子控制在 ~E9.5 开始条件性缺失的转基因小鼠(Prrx1Cre(+)/ Cyp26b1(fl/fl))研究了内源性视黄酸信号在骨骼发生中的作用。我们发现,Prrx1Cre(+)/ Cyp26b1(fl/fl)小鼠的肢体表型比 Cyp26b1(-/-)动物观察到的表型要轻,并且视黄酸信号的变化导致了表型的差异。我们系统地研究了内源性 RA 信号在软骨发生中的作用,发现 Cyp26b1(-/-)细胞和用 CYP 抑制剂处理的肢间充质细胞保持在预软骨形成状态,软骨母细胞分化减少,软骨细胞肥大加速适度。此外,Cyp26b1(-/-)间充质表现出与密切相关的 tendogenic 谱系中的基因表达增加,表明肢体中的视黄酸信号干扰了分化并维持了祖细胞状态。总之,这些发现支持 RA 在调节间充质祖细胞的行为及其随后的分化和成熟方面的重要功能。

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