Hammond Christina Lindsey, Schulte-Merker Stefan
Hubrecht Institute, Royal Netherlands Academy of Arts and Sciences & University Medical Centre, 3584CT Utrecht, The Netherlands.
Development. 2009 Dec;136(23):3991-4000. doi: 10.1242/dev.042150.
Hedgehog (Hh) signalling has been implicated in the development of osteoblasts and osteoclasts whose balanced activities are critical for proper bone formation. As many mouse mutants in the Hh pathway are embryonic lethal, questions on the exact effects of Hh signalling on osteogenesis remain. Using zebrafish, we show that there are two populations of endochondral osteoblasts with differential sensitivity to Hh signalling. One, formed outside the cartilage structure, requires low levels of Hh signalling and fails to differentiate in Indian hedgehog mutants. The other derives from chondrocytes and requires higher levels of Hh signalling to form. This latter population develops significantly earlier in mutants with increased Hh signalling, leading to premature endochondral ossification, and also fails to differentiate in Indian hedgehog mutants, resulting in severely delayed endochondral ossification. Additionally, we demonstrate that the timing of first osteoclast activity positively correlates to Hh levels in both endochondral and dermal bone.
刺猬信号通路(Hh)已被证明与成骨细胞和破骨细胞的发育有关,它们的平衡活动对正常的骨形成至关重要。由于许多Hh信号通路的小鼠突变体在胚胎期致死,Hh信号对骨生成的确切影响仍存在疑问。利用斑马鱼,我们发现有两种不同的软骨内成骨细胞群体,它们对Hh信号的敏感性不同。一种在软骨结构外形成,需要低水平的Hh信号,在印度刺猬信号突变体中无法分化。另一种来源于软骨细胞,需要更高水平的Hh信号才能形成。后一种群体在Hh信号增加的突变体中发育明显更早,导致软骨内骨化过早,并且在印度刺猬信号突变体中也无法分化,导致软骨内骨化严重延迟。此外,我们证明破骨细胞首次活动的时间与软骨内骨和真皮骨中的Hh水平呈正相关。