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进入软骨形成阶段的细胞中Hoxa2的表达会损害整体软骨发育。

Expression of Hoxa2 in cells entering chondrogenesis impairs overall cartilage development.

作者信息

Massip Laurent, Ectors Fabien, Deprez Pierre, Maleki Mehdi, Behets Catherine, Lengelé Benoît, Delahaut Philippe, Picard Jacques, Rezsöhazy René

机构信息

Developmental Genetics Unit, Université catholique de Louvain, Brussels, Belgium.

出版信息

Differentiation. 2007 Mar;75(3):256-67. doi: 10.1111/j.1432-0436.2006.00132.x.

Abstract

Vertebrate Hox genes act as developmental architects by patterning embryonic structures like axial skeletal elements, limbs, brainstem territories, or neural crest derivatives. While active during the patterning steps of development, these genes turn out to be down-regulated in specific differentiation programs like that leading to chondrogenesis. To investigate why chondrocyte differentiation is correlated to the silencing of a Hox gene, we generated transgenic mice allowing Cre-mediated conditional misexpression of Hoxa2 and induced this gene in Collagen 2 alpha 1-expressing cells committed to enter chondrogenesis. Persistent Hoxa2 expression in chondrogenic cells resulted in overall chondrodysplasia with delayed cartilage hypertrophy, mineralization, and ossification but without proliferation defects. The absence of skeletal patterning anomaly and the regular migration of precursor cells indicated that the condensation step of chondrogenesis was normal. In contrast, closer examination at the differentiation step showed severely impaired chondrocyte differentiation. In addition, this inhibition affected structures independently of their embryonic origin. In conclusion, for the first time here, by a cell-type specific misexpression, we precisely uncoupled the patterning function of Hoxa2 from its involvement in regulating differentiation programs per se and demonstrate that Hoxa2 displays an anti-chondrogenic activity that is distinct from its patterning function.

摘要

脊椎动物的Hox基因通过对胚胎结构进行模式化,如轴向骨骼元素、四肢、脑干区域或神经嵴衍生物,从而起到发育建筑师的作用。虽然这些基因在发育的模式化步骤中是活跃的,但在特定的分化程序中,如导致软骨形成的程序中,它们会被下调。为了研究为什么软骨细胞分化与Hox基因的沉默相关,我们构建了转基因小鼠,使其能够通过Cre介导条件性错误表达Hoxa2,并在致力于进入软骨形成的表达胶原蛋白2α1的细胞中诱导该基因表达。软骨细胞中持续的Hoxa2表达导致了整体软骨发育不良,伴有软骨肥大、矿化和骨化延迟,但没有增殖缺陷。骨骼模式异常的缺失以及前体细胞的正常迁移表明软骨形成的凝聚步骤是正常的。相反,在分化步骤进行更仔细的检查时发现软骨细胞分化严重受损。此外,这种抑制作用对结构的影响与其胚胎起源无关。总之,在这里我们首次通过细胞类型特异性错误表达,精确地将Hoxa基因的模式化功能与其本身参与调节分化程序的作用分离开来,并证明Hoxa2表现出一种与其模式化功能不同的抗软骨形成活性。

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