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Interaction of Tmem119 and the bone morphogenetic protein pathway in the commitment of myoblastic into osteoblastic cells

机译:Tmem119和骨形态发生蛋白途径在成肌细胞向成骨细胞定型中的相互作用

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摘要

Bone morphogenetic proteins (BMPs) are critical for bone regeneration and induce ectopic bone formation in vivo. The constitutively activating mutation (R206H) of the BMP type 1 receptor, activin A type 1 receptor/activin-like kinase 2 (ACVR1/ALK2), underlies the molecular pathogenesis of fibrodysplasia ossificans progressiva (FOP) in which heterotopic ossification occurs in muscle tissue. In the present study, we performed a comparative DNA microarray analysis between stable empty vector- and ALK2(R206H)-transfected mouse myoblastic C2C12 cells. Forty genes were identified whose expression was increased > 3.5 times in the experimental group versus the control. The bone formation-related factor, Tmem119, was included in this group. Osteoblast differentiation markers and mineralization were enhanced in C2C12 cells stably expressing Tmem119. Differentiation of myoblastic cells into myotubes was suppressed but differentiation into chondrocytes was little affected. Transcriptional activity of the BMP-2 signaling molecules, Smad1/5, was increased even in the absence of exogenous BMP-2. Endogenous BMP-2 levels positively correlated with Tmem119 levels. A BMP-2/4 neutralizing antibody and dorsomorphin, an ALK2 inhibitor, antagonized Tmem119-enhanced alkaline phosphatase (ALP) levels. Tmem119 siRNA antagonized the BMP-2-induced ALP and osteocalcin, but not Runx2 and Osterix, mRNAs, in C2C12 cells. In conclusion, Tmem119 levels were increased by the FOP-associated constitutively activating ALK2 mutation in myoblasts. The data show that Tmem119 promotes the differentiation of myoblasts into osteoblasts and the interaction with the BMP signaling pathway likely occurs downstream of Runx2 and Osterix in myoblasts. Tmem119 may play a critical role in the commitment of myoprogenitor cells to the osteoblast lineage.
机译:骨形态发生蛋白(BMP)对于骨骼再生和在体内诱导异位骨形成至关重要。 BMP 1型受体的组成型激活突变(R206H),A型激活素1受体/类激活素激酶2(ACVR1 / ALK2)构成了进行性骨化性纤维增生症(FOP)的分子发病机制,在肌肉组织中发生异位骨化。在本研究中,我们在稳定的空载体和ALK2(R206H)转染的小鼠成肌C2C12细胞之间进行了比较DNA微阵列分析。在实验组中与对照相比,鉴定出四十个基因,其表达增加> 3.5倍。骨形成相关因子Tmem119包括在该组中。在稳定表达Tmem119的C2C12细胞中,成骨细胞分化标记和矿化作用增强。抑制了成肌细胞向肌管的分化,但是对成软骨细胞的分化影响很小。即使没有外源BMP-2,BMP-2信号分子Smad1 / 5的转录活性也会增加。内源性BMP-2水平与Tmem119水平呈正相关。 BMP-2 / 4中和抗体和ALK2抑制剂dorsomorphin拮抗Tmem119增强的碱性磷酸酶(ALP)的水平。 Tmem119 siRNA拮抗C2C12细胞中BMP-2诱导的ALP和骨钙蛋白,但不拮抗Runx2和Osterix mRNA。总之,通过成肌细胞中FOP相关性组成性激活ALK2突变,Tmem119水平升高。数据显示,Tmem119促进成肌细胞向成骨细胞的分化,并且与BMP信号通路的相互作用可能发生在成肌细胞中Runx2和Osterix的下游。 Tmem119可能在肌祖细胞对成骨细胞谱系的定向中起关键作用。

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