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首页> 外文期刊>Regenerative Therapy >Msx2 plays an important role in BMP6-induced osteogenic differentiation of two mesenchymal cell lines: C3H10T1/2 and C2C12
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Msx2 plays an important role in BMP6-induced osteogenic differentiation of two mesenchymal cell lines: C3H10T1/2 and C2C12

机译:MSX2在BMP6诱导的两种间充质细胞系的成骨分化中起重要作用:C3H10T1 / 2和C2C12

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Bone morphogenetic proteins (BMPs), have been shown to enhance the osteogenic differentiation of mesenchymal cells (MCs) and to promote bone formation. BMP6 is known to play an important role in the process of MCs towards osteogenic differentiation by virtue of their osteoinductive and cell type specific proliferative activity. However, the molecular mechanism relate to BMP6 osteoinductive activity is still unclear and continues to warrant further investigation. Msx2 is a member of the homeobox gene family of transcription factors and promotes calcification. Hence, we wondered if it might also play a role in BMP6-induced osteogenesis. In this study, two mouse mesenchymal cell lines were treated with BMP6, adenovirus-Msx2 (Ad-Msx2) or adenovirus-siMsx2 (Ad-siMsx2). Based on the results of mRNA and protein expression, it was indicated that BMP6 could enhance the expression of Msx2 and activate the phosphorylation of Smad 1/5/8, p38 and ERK1/2. Being transfected by Ad-Msx2, the BMP6-induced activation of phosphorylation was significantly promoted. On the contrary, two cell lines transfected by Ad-siMsx2 presented an inhibited expression of three phosphorylated proteins even after being induced by BMP6. The evaluation of ALP, OPN, OC and calcium deposits revealed the osteogenic results those were corresponding to the results of mRNA and protein. Taken together, these findings can be a novel viewpoint for the understanding of the mechanisms of BMP6-induced osteogenesis and provide therapeutic targets of bone defect.
机译:已显示骨形态发生蛋白(BMP)以增强间充质细胞(MCS)的成骨分化并促进骨形成。已知BMP6在通过其骨诱导和细胞类型特异性增殖活性在MCS朝着成骨分化的过程中发挥重要作用。然而,分子机制涉及BMP6骨诱导活性尚不清楚并继续提供进一步调查。 MSX2是Homeobox基因系列转录因子的成员,促进钙化。因此,我们想知道它也可能在BMP6诱导的骨癌中发挥作用。在该研究中,用BMP6,腺病毒-MSX2(Ad-MSX2)或腺病毒-Simsx2(Ad-Simsx2)处理两种小鼠间充质细胞系。基于mRNA和蛋白质表达的结果,表明BMP6可以增强MSX2的表达,并激活Smad 1/5 / 8,P38和ERK1 / 2的磷酸化。通过Ad-MSX2转染,显着促进了BMP6诱导的磷酸化活化。相反,即使在BMP6诱导之后,Ad-Simsx2转染的两条细胞系呈现了三种磷酸化蛋白的抑制表达。 ALP,OPN,OC和钙沉积物的评价显示了对应于mRNA和蛋白质的结果的骨质原因结果。在一起,这些发现可以是了解BMP6诱导的骨发生机制并提供骨缺损的治疗靶标的新颖的观点。

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