Papanicolaou Savvas E, Phipps Roger J, Fyhrie David P, Genetos Damian C
Lawrence J. Ellison Musculoskeletal Research Center, Department of Orthopaedic Surgery, University of California at Davis, Sacramento, CA, USA.
Biorheology. 2009;46(5):389-99. doi: 10.3233/BIR-2009-0550.
The anabolic effect of dynamic mechanical loading on skeletal architecture has been repeatedly demonstrated, but the cellular and molecular events occurring between load and ultimate bone formation remain obscure. The discovery of sclerostin, an antagonist of Wnt/Lrp5 signaling, and the sclerosing bone dysplasias that result from its mutation suggest its pivotal role in modulating bone formation. We examined expression of Sost mRNA across a variety of clonal cell lines spanning the osteogenic phenotype from immature osteoblast to mature osteocyte. No sclerostin expression was detected in immature MC3T3-E1 osteoblasts and, surprisingly, mature MLO-Y4 osteocytes, whereas immature MLO-A5 osteocytic cells expressed very low levels of Sost. Highest expression was observed in mature UMR 106.01 osteoblasts. We examined the influence of bone morphogenetic proteins on Sost expression. Treatment with BMP-2, -4 or -6 was without effect on Sost in mature MLO-Y4 osteocytes but elicited a robust increase in Sost expression in immature MLO-A5 osteocytes. Oscillatory fluid flow applied to mature UMR 106.01 osteoblasts transiently decreased expression of sclerostin at both the mRNA and protein level. Overall, our results indicate that BMP treatment and in vitro mechanical loading demonstrate opposite effects upon sclerostin expression.
动态机械负荷对骨骼结构的合成代谢作用已得到反复证实,但负荷与最终骨形成之间发生的细胞和分子事件仍不清楚。硬化素(一种Wnt/Lrp5信号的拮抗剂)的发现以及由其突变导致的骨硬化发育异常表明其在调节骨形成中起关键作用。我们检测了从未成熟成骨细胞到成熟骨细胞的各种具有成骨表型的克隆细胞系中Sost mRNA的表达。在未成熟的MC3T3-E1成骨细胞中未检测到硬化素表达,令人惊讶的是在成熟的MLO-Y4骨细胞中也未检测到,而未成熟的MLO-A5骨细胞表达的Sost水平非常低。在成熟的UMR 106.01成骨细胞中观察到最高表达。我们研究了骨形态发生蛋白对Sost表达的影响。用BMP-2、-4或-6处理对成熟的MLO-Y4骨细胞中的Sost没有影响,但在未成熟的MLO-A5骨细胞中引起Sost表达的强烈增加。施加于成熟的UMR 106.01成骨细胞的振荡液流在mRNA和蛋白质水平上均短暂降低了硬化素的表达。总体而言,我们的结果表明BMP处理和体外机械负荷对硬化素表达表现出相反的作用。