INSERM, U606, Paris, France.
Bone. 2013 Mar;53(1):6-12. doi: 10.1016/j.bone.2012.11.020. Epub 2012 Nov 29.
Wnt signaling is an important pathway that controls the osteogenic differentiation of mesenchymal stromal cells (MSC). We previously showed that FHL2, a LIM-only protein with four and a half LIM domains, controls MSC osteogenic differentiation via the canonical Wnt/β-catenin signaling. In this study, we investigated the role of Wnt proteins in the regulation of MSC differentiation by FHL2. We found that Wnt3a increased FHL2 mRNA expression in murine C3H10T1/2 mesenchymal cells. Silencing FHL2 using short hairpin (sh) RNA attenuated β-catenin transcriptional activity and osteogenic differentiation induced by Wnt3a. In addition, FHL2 silencing reduced the expression of the key molecules Wnt5a and Wnt10b and osteoblast gene expression. Wnt10b overcomes the negative effect of FHL2 knockdown on osteoblast gene expression in vitro. To confirm this finding in vivo, we analyzed the expression of these Wnt molecules in FHL2 deficient mice. Histomorphometric analyses showed that FHL2 knockout decreased trabecular number and thickness and reduced bone mass in 15-month old mice. This phenotype was associated with decreased Wnt5a and Wnt10b and lower than normal c-myc, cyclin D1 and osteoblast gene expression in the bone marrow. Ex vivo analysis showed decreased basal and Wnt3a-induced Wnt5a and Wnt10b mRNA expression in FHL2-deficient bone marrow cells, further indicating that this defect may contribute to the reduced osteoblast function in FHL2 deficient mice. In contrast, the decreased adipogenesis induced by FHL2 deficiency in vitro and in vivo was linked to increased Foxo1 expression. Collectively, the results provide evidence for a previously unrecognized mechanism by which FHL2 controls the osteogenic differentiation of MSC, bone formation and bone mass through modulation of Wnt molecules.
Wnt 信号通路是控制间充质基质细胞(MSC)成骨分化的重要途径。我们之前的研究表明,含有四个半 LIM 结构域的 LIM 蛋白 FHL2 通过经典的 Wnt/β-catenin 信号通路控制 MSC 的成骨分化。在这项研究中,我们研究了 Wnt 蛋白在 FHL2 调控 MSC 分化中的作用。我们发现 Wnt3a 增加了鼠 C3H10T1/2 间充质细胞中 FHL2 的 mRNA 表达。使用短发夹(sh)RNA 沉默 FHL2 减弱了 Wnt3a 诱导的β-catenin 转录活性和成骨分化。此外,FHL2 沉默降低了关键分子 Wnt5a 和 Wnt10b 的表达以及成骨基因的表达。Wnt10b 克服了 FHL2 敲低对体外成骨基因表达的负向影响。为了在体内证实这一发现,我们分析了 FHL2 缺陷小鼠中这些 Wnt 分子的表达。组织形态计量学分析表明,FHL2 敲除减少了 15 个月大的小鼠的小梁数量和厚度,并降低了骨量。这种表型与 Wnt5a 和 Wnt10b 的减少以及骨髓中低于正常水平的 c-myc、细胞周期蛋白 D1 和成骨基因的表达有关。体外分析显示,FHL2 缺陷的骨髓细胞中基础和 Wnt3a 诱导的 Wnt5a 和 Wnt10b mRNA 表达减少,进一步表明这种缺陷可能导致 FHL2 缺陷小鼠成骨细胞功能降低。相比之下,体外和体内 FHL2 缺陷导致的脂肪生成减少与 Foxo1 表达增加有关。总之,这些结果为 FHL2 通过调节 Wnt 分子控制 MSC 的成骨分化、骨形成和骨量提供了一个以前未被认识的机制的证据。