Umemoto Takenao, Furutani Yuuma, Murakami Masaru, Matsui Tohru, Funaba Masayuki
Division of Applied Biosciences, Kyoto University Graduate School of Agriculture, Kyoto 606-8502, Japan.
Biochim Biophys Acta. 2011 Dec;1810(12):1127-35. doi: 10.1016/j.bbagen.2011.09.008. Epub 2011 Sep 22.
Our previous study revealed the indispensable activity of endogenous bone morphogenetic protein (Bmp) prior to differentiation induction of C2C12 myoblasts for myogenesis. Here we investigated the Bmp isoform responsible for endogenous Bmp activity during differentiation and its role in myogenesis.
Gene expression of Bmp4 during myogenesis was evaluated in C2C12 cells. Effects of inhibition of the Bmp pathway on myogenesis were examined. Cells expressing Bmp4 and regulation of Bmp4 expression in myoblasts were explored.
The expression of Bmp4 increased with the progression of myogenesis, although the extent of the increase after differentiation induction was smaller than that before the induction. Down-regulation of Bmp signal components including Bmp4, Bmpr2, and Alk2/3 inhibited the emergence of positive cells for myosin heavy chain II. The treatments also decreased the Myogenin expression. Treatment with cytosine arabinoside decreased the expression of Bmp4. Also, Bmp4 expression was also lower in isolated myotubes than in residual cells. Expression of Rgm c was higher in the myotube fraction. Transcription of Bmp4 was repressed by the conditioned medium of mixed cells consisting of myoblasts and myotubes.
Bmp4 expressed in myoblasts has a positive role in myotube formation/maturation through myogenin expression. The presence of myotubes inhibits Bmp4 expression in proliferating myoblasts through transcriptional regulation, although the expression is intrinsically increased with time of culture.
Taken previous results on involvement of Bmp in the commitment of osteoblasts and adipocytes with the present results together, Bmp may act as a general promoter of mesenchymal cell differentiation.
我们之前的研究揭示了内源性骨形态发生蛋白(Bmp)在诱导C2C12成肌细胞分化以进行肌生成之前具有不可或缺的活性。在此,我们研究了在分化过程中负责内源性Bmp活性的Bmp亚型及其在肌生成中的作用。
评估了C2C12细胞在肌生成过程中Bmp4的基因表达。检测了抑制Bmp信号通路对肌生成的影响。探索了在成肌细胞中表达Bmp4的细胞以及Bmp4表达的调控。
随着肌生成的进展,Bmp4的表达增加,尽管分化诱导后的增加程度小于诱导前。包括Bmp4、Bmpr2和Alk2/3在内的Bmp信号成分的下调抑制了肌球蛋白重链II阳性细胞的出现。这些处理也降低了生肌调节因子的表达。用阿糖胞苷处理降低了Bmp4的表达。此外,分离的肌管中Bmp4的表达也低于残留细胞。Rgm c在肌管部分的表达较高。Bmp4的转录受到由成肌细胞和肌管组成的混合细胞的条件培养基的抑制。
成肌细胞中表达的Bmp4通过生肌调节因子的表达在肌管形成/成熟中发挥积极作用。肌管的存在通过转录调控抑制增殖成肌细胞中Bmp4的表达,尽管随着培养时间的推移其表达在本质上会增加。
将之前关于Bmp参与成骨细胞和脂肪细胞定向分化的结果与目前的结果结合起来,Bmp可能作为间充质细胞分化总的促进因子。