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Ihh signaling is directly required for the osteoblast lineage in the endochondral skeleton.

机译:软骨内骨架中的成骨细胞谱系直接需要Ihh信号传导。

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Indian hedgehog (Ihh) is indispensable for development of the osteoblast lineage in the endochondral skeleton. In order to determine whether Ihh is directly required for osteoblast differentiation, we have genetically manipulated smoothened (Smo), which encodes a transmembrane protein that is essential for transducing all Hedgehog (Hh) signals. Removal of Smo from perichondrial cells by the Cre-LoxP approach prevents formation of a normal bone collar and also abolishes development of the primary spongiosa. Analysis of chimeric embryos composed of wild-type and Smo(n) cells indicates that Smo(n) cells fail to contribute to osteoblasts in either the bone collar or the primary spongiosa but generate ectopic chondrocytes. In order to assess whether Ihh is sufficient to induce bone formation in vivo, we have analyzed the bone collar in the long bones of embryos in which Ihh was artificially expressed in all chondrocytes by the UAS-GAL4 bigenic system. Although ectopic Ihh does not induce overt ossification along the entire cartilage anlage, it promotes progression of the bone collar toward the epiphysis, suggesting a synergistic effect between ectopic Ihh and endogenous factors such as the bone morphogenetic proteins (BMPs). In keeping with this model, Hh signaling is further found to be required in BMP-induced osteogenesis in cultures of a limb-bud cell line. Taken together, these results demonstrate that Ihh signaling is directly required for the osteoblast lineage in the developing long bones and that Ihh functions in conjunction with other factors such as BMPs to induce osteoblast differentiation. We suggest that Ihh acts in vivo on a potential progenitor cell to promote osteoblast and prevent chondrocyte differentiation.
机译:印度刺猬(Ihh)对于软骨内骨骼中成骨细胞谱系的发育必不可少。为了确定Ihh是否直接是成骨细胞分化所必需的,我们进行了基因操纵的平滑化(Smo),该编码的跨膜蛋白是转导所有刺猬(Hh)信号必不可少的。通过Cre-LoxP方法从软骨膜细胞中去除Smo可以防止正常骨环的形成,也可以消除原发性海绵体的发展。对由野生型和Smo(n / n)细胞组成的嵌合胚胎的分析表明,Smo(n / n)细胞无法促进骨环或原发性海绵体内的成骨细胞,但会产生异位软骨细胞。为了评估Ihh是否足以在体内诱导骨骼形成,我们分析了通过UAS-GAL4双基因系统在所有软骨细胞中人工表达Ihh的胚胎长骨中的骨环。尽管异位Ihh不会在整个软骨损伤中引起明显的骨化,但会促进骨环向骨physi发展,提示异位Ihh与内源性因素(例如骨形态发生蛋白(BMP))之间具有协同作用。与该模型保持一致,在肢芽细胞系的培养物中,还发现在BMP诱导的成骨中还需要Hh信号。综上所述,这些结果表明,Ihh信号直接是发育中的长骨中成骨细胞谱系所必需的,并且Ihh与其他因素(例如BMPs)共同作用以诱导成骨细胞分化。我们建议,Ihh在体内作用于潜在的祖细胞,以促进成骨细胞并防止软骨细胞分化。

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