Leboy P, Grasso-Knight G, D'Angelo M, Volk S W, Lian J V, Drissi H, Stein G S, Adams S L
Department of Biochemistry, School of Dental Medicine, University of Pennsylvania, Philadelphia 19104-6003, USA.
J Bone Joint Surg Am. 2001;83-A Suppl 1(Pt 1):S15-22.
Intracellular signaling triggered by bone morphogenetic proteins (BMPs) results in activated Smad complexes that regulate transcription of BMP-responsive genes. However, the low specificity of Smad binding to regulatory sequences implies that additional tissue-specific transcription factors are also needed. Runx2 (Cbfal) is a transcription factor required for bone formation. We have examined the role of Smads and Runx2 in BMP induction of type X collagen, which is a marker of chondrocyte hypertrophy leading to endochondral bone formation.
Pre-hypertrophic chondrocytes from the cephalic portion of the chick embryo sternum were placed in culture in the presence or absence of rhBMP-2. Cultures were transiently transfected with DNA containing the BMP-responsive type X collagen promoter upstream of the luciferase gene. The cultures were also transfected with plasmids, causing over-expression of Smads or Runx2, or both. After 24-48 hours, cell extracts were examined for levels of luciferase expression.
In the presence of BMP-2, chondrocytes over-expressing BMP-activated Smadl or Smad5 showed significant enhancement of luciferase production compared with that seen with BMP alone. This enhancement was not observed with over-expression of Smad2, a transforming growth factor beta (TGF-beta)-activated Smad. Overexpression of Runx2 in BMP-treated cultures increased transcriptional activity to levels similar to those seen with Smads 1 or 5. When chondrocytes were simultaneously transfected with both Runx2 and Smad 1 or 5, promoter activity was further increased, indicating that BMP-stimulated Smad activity can be augmented by increasing the levels of Runx2.
These results implicate the skeletal tissue transcription factor Runx2 in regulation of chondrocyte hypertrophy and suggest that maximal transcription of the type X collagen gene in pre-hypertrophic chondrocytes involves interaction of BMP-stimulated Smads with Runx2.
Many skeletal abnormalities are associated with impaired regulation of chondrocyte hypertrophy in growth plates. These studies demonstrate that both BMP-activated Smads and Runx2 levels can modulate chondrocyte transition to hypertrophy.
骨形态发生蛋白(BMPs)触发的细胞内信号传导会导致活化的Smad复合物,该复合物可调节BMP反应性基因的转录。然而,Smad与调控序列结合的低特异性表明还需要其他组织特异性转录因子。Runx2(Cbfal)是骨形成所需的转录因子。我们研究了Smads和Runx2在BMP诱导X型胶原蛋白中的作用,X型胶原蛋白是软骨细胞肥大的标志物,可导致软骨内骨形成。
将来自鸡胚胸骨头部的前肥大软骨细胞在有或无重组人骨形态发生蛋白-2(rhBMP-2)的情况下进行培养。用含有荧光素酶基因上游BMP反应性X型胶原蛋白启动子的DNA对培养物进行瞬时转染。培养物还转染了导致Smads或Runx2或两者过表达的质粒。24至48小时后,检测细胞提取物中荧光素酶的表达水平。
在存在BMP-2的情况下,与单独使用BMP相比,过表达BMP激活的Smad1或Smad5的软骨细胞显示荧光素酶产生显著增强。而转化生长因子β(TGF-β)激活的Smad2过表达则未观察到这种增强。在BMP处理的培养物中Runx2过表达使转录活性增加到与Smad1或Smad5相似的水平。当软骨细胞同时转染Runx2和Smad1或Smad5时,启动子活性进一步增加,表明通过增加Runx2的水平可增强BMP刺激的Smad活性。
这些结果表明骨骼组织转录因子Runx2参与软骨细胞肥大的调节,并提示前肥大软骨细胞中X型胶原蛋白基因的最大转录涉及BMP刺激的Smads与Runx2的相互作用。
许多骨骼异常与生长板中软骨细胞肥大调节受损有关。这些研究表明,BMP激活的Smads和Runx2水平均可调节软骨细胞向肥大的转变。