Bmp2/4对体外成骨细胞分化和ECM重塑的调控。

L Wu, J Feng, Y Mu, Gluhak-heinrich, K Donly, I Wnag, S Harris, M Macdougall, S Chen
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引用次数: 0

摘要

骨形态发生蛋白2和4 (Bmp2和Bmp4)是转化生长因子β超家族的两个密切相关的成员,在正常和病理过程中发挥不同的作用。然而,由于Bmp2和Bmp4的功能相互补偿,对它们发挥作用的机制的详细理解仍然是难以捉摸的。为了研究Bmp2/Bmp4在成骨细胞分化和细胞外基质(ECM)重塑中的作用,我们分离了具有Cre重组酶识别位点(loxP)的Bmp2/4条件小鼠颅骨成骨细胞,并用猴病毒40大T抗原转染,生成了永活的BMP2C/C4C/C (iBMP2 C/C/4C/C)成骨细胞系。Ad-Cre重组酶感染iBMP2 C/C/4C/C细胞双敲除BMP2/4基因。碱性磷酸酶(ALP)和茜素(ALZ)红S染色检测iBMP2C/C/4C/C敲除(iBMP2C/C/4C/C KO)细胞的分化和矿化情况。荧光显微镜下观察到ECM重构。与iBMP2C/C/4C/C成骨细胞相比,iBMP2C/C/4C/C成骨细胞的细胞分化明显降低。通过ALZ染色,这些KO细胞的矿化也减少了。此外,Bmp2/4双敲除细胞在重塑ECM方面存在主要缺陷,这反映在I型胶原加工的变化上。本研究首次证实了iBmp2C/C/4C/C KO成骨细胞的建立。iBmp2C/C/4C/C KO细胞分化和矿化程度降低。此外,这些KO细胞的ECM加工受到损害。这表明BMP2/4在成骨细胞分化和ECM重塑中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
O45-regulation of osteoblast differentiation and ECM remodeling by Bmp2/4 in vitro.

Both of bone morphogenetic proteins 2 and 4 (Bmp2 and Bmp4) are two closely related members of the transforming growth factor beta superfamily and play diverse roles in normal and pathological processes. However, detail understandings of mechanisms through which Bmp2 and Bmp4 exert their effects remain elusive due to their functional compensations each other. To study roles of Bmp2/Bmp4 in osteoblast differentiation and extracellular matrix (ECM) remodeling, calvarial osteoblasts from Bmp2/4 conditional mice with Cre recombinase recognition site (loxP) were isolated and transfected with simian virus 40 large T antigen to generate immortalized BMP2C/C4C/C (iBMP2 C/C/4C/C) osteoblast lines. The BMP2/4 genes in the iBMP2 C/C/4C/C cells were double knocked out by Ad-Cre recombinase infection. Differentiation and mineralization of iBMP2C/C/4C/C knock-out (iBmp2C/C/4C/C KO) cells were detected by alkaline phosphatase (ALP) and alizarin (ALZ) red S staining analyses. ECM remodeling was also observed in fluorescent microscope. Cell differentiation was dramatically decreased in the iBMP2C/C/4C/C KO cells compared to that of the iBMP2C/C/4C/C osteoblasts. Mineralization was also reduced in these KO cells by ALZ staining. Furthermore, Bmp2/4 double knock-out cells have major defects in remodeling the ECM as reflected by changes in collagen type I processing. Here we for the first time demonstrate the establishment of iBmp2C/C/4C/C KO osteoblasts. Cell differentiation and mineralization in the iBmp2C/C/4C/C KO cells were decreased. Furthermore, ECM processing in these KO cells was impaired. This indicates that BMP2/4 play important roles in osteoblast differentiation and ECM remodeling.

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