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Establishment of Immortalized BMP2/4 Double Knock‐Out Osteoblastic Cells Is Essential for Study of Osteoblast Growth Differentiation and Osteogenesis

机译:建立永生化的BMP2 / 4双敲除成骨细胞对于研究成骨细胞的生长分化和成骨至关重要

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摘要

Bone morphogenetic proteins 2 and 4 (BMP2/4) are essential for osteoblast differentiation and osteogenesis. Generation of a BMP2/4 dual knock‐out (ko/ko) osteoblastic cell line is a valuable asset for studying effects of BMP2/4 on skeletal development. In this study, our goal was to create immortalized mouse deleted BMP2/4 osteoblasts by infecting adenoviruses with Cre recombinase and green fluorescent protein genes into immortalized murine floxed BMP2/4 osteoblasts. Transduced BMP2/4ko/ko cells were verified by green immunofluorescence and PCR. BMP2/4ko/ko osteoblasts exhibited small size, slow cell proliferation rate and cell growth was arrested in G1 and G2 phases. Expression of bone‐relate genes was reduced in the BMP2/4ko/ko cells, resulting in delay of cell differentiation and mineralization. Importantly, extracellular matrix remodeling was impaired in the BMP2/4ko/ko osteoblasts as reflected by decreased Mmp‐2 and Mmp‐9 expressions. Cell differentiation and mineralization were rescued by exogenous BMP2 and/or BMP4. Therefore, we for the first time described establishment of an immortalized deleted BMP2/4 osteoblast line useful for study of mechanisms in regulating osteoblast lineages. J. Cell. Physiol. 231: 1189–1198, 2016. © 2015 The Authors. Journal of Cellular Physiology Published by Wiley Periodicals, Inc.
机译:骨形态发生蛋白2和4(BMP2 / 4)对于成骨细胞的分化和成骨至关重要。 BMP2 / 4双敲除( ko / ko )成骨细胞系的生成是研究BMP2 / 4对骨骼发育影响的宝贵资产。在这项研究中,我们的目标是通过用Cre重组酶和绿色荧光蛋白基因感染腺病毒到永生化的鼠类固着性BMP2 / 4成骨细胞中,从而创建永生化的小鼠缺失BMP2 / 4成骨细胞。通过绿色免疫荧光和PCR验证了转导的BMP2 / 4 ko / ko 细胞。 BMP2 / 4 ko / ko 成骨细胞体积小,细胞增殖速度慢,细胞生长被阻滞在G1和G2期。 BMP2 / 4 ko / ko 细胞中骨相关基因的表达减少,导致细胞分化和矿化延迟。重要的是,BMP2 / 4 ko / ko 成骨细胞中的细胞外基质重塑受损,这由Mmp-2和Mmp-9表达的降低所反映。细胞分化和矿化可通过外源BMP2和/或BMP4挽救。因此,我们首次描述了永生化缺失的BMP2 / 4成骨细胞系的建立,可用于研究调节成骨细胞谱系的机制。 J.细胞。生理。 231:1189–1198,2016。©2015 The Authors。 Wiley Periodicals,Inc.出版的《细胞生理学杂志》。

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