Wu Li-An, Wang Feng, Donly Kevin J, Baker Andrew, Wan Chunyan, Luo Daoshu, MacDougall Mary, Chen Shuo
Department of Developmental Dentistry, The University of Texas Health Science Center at San Antonio, Texas.
Department of Pediatric Dentistry, School of Stomatology, The Fourth Military Medical University, Xi-an, China.
J Cell Physiol. 2016 Jun;231(6):1189-98. doi: 10.1002/jcp.25266. Epub 2015 Dec 28.
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 BMP2/4(ko/ko) cells were verified by green immunofluorescence and PCR. BMP2/4(ko/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 BMP2/4(ko/ko) cells, resulting in delay of cell differentiation and mineralization. Importantly, extracellular matrix remodeling was impaired in the BMP2/4(ko/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.
骨形态发生蛋白2和4(BMP2/4)对于成骨细胞分化和骨生成至关重要。生成BMP2/4双敲除((ko/ko))成骨细胞系对于研究BMP2/4对骨骼发育的影响是一项有价值的资源。在本研究中,我们的目标是通过将携带Cre重组酶和绿色荧光蛋白基因的腺病毒感染永生化的小鼠BMP2/4条件性敲除成骨细胞,来创建永生化的小鼠BMP2/4缺失成骨细胞。通过绿色免疫荧光和PCR验证转导的BMP2/4(ko/ko)细胞。BMP2/4(ko/ko)成骨细胞体积小,细胞增殖速率慢,细胞生长停滞在G1和G2期。BMP2/4(ko/ko)细胞中骨相关基因的表达降低,导致细胞分化和矿化延迟。重要的是,BMP2/4(ko/ko)成骨细胞的细胞外基质重塑受损,这通过Mmp-2和Mmp-9表达降低得以体现。外源性BMP2和/或BMP4可挽救细胞分化和矿化。因此,我们首次描述了建立一种永生化的BMP2/4缺失成骨细胞系,该细胞系可用于研究调节成骨细胞谱系的机制。