Mukherjee Aditi, Rotwein Peter
Department of Biochemistry and Molecular Biology, Oregon Health and Science University, Portland, Oregon 97239, USA.
Mol Endocrinol. 2008 May;22(5):1238-50. doi: 10.1210/me.2008-0001. Epub 2008 Feb 21.
Signaling through the IGF-I receptor by locally synthesized IGF-I or IGF-II is critical for normal skeletal development and for bone remodeling and repair throughout the lifespan. In most tissues, IGF actions are modulated by IGF-binding proteins (IGFBPs). IGFBP-5 is the most abundant IGFBP in bone, and previous studies have suggested that it may either enhance or inhibit osteoblast differentiation in culture and may facilitate or block bone growth in vivo. To resolve these contradictory observations and discern the mechanisms of action of IGFBP-5 in bone, we studied its effects in differentiating osteoblasts and in primary bone cultures. Purified wild-type (WT) mouse IGFBP-5 or a recombinant adenovirus expressing IGFBP-5WT each prevented osteogenic differentiation induced by the cytokine bone morphogenetic protein (BMP)-2 at its earliest stages without interfering with BMP-mediated signaling, whereas an analog with reduced IGF binding (N domain mutant) was ineffective. When added at later phases of bone cell maturation, IGFBP-5WT but not IGFBP-5N blocked mineralization, prevented longitudinal growth of mouse metatarsal bones in short-term primary culture, and inhibited their endochondral ossification. Because an IGF-I variant (R3IGF-I) with diminished affinity for IGFBPs promoted full osteogenic differentiation in the presence of IGFBP-5WT, our results show that IGFBP-5 interferes with IGF action in osteoblasts and provides a framework for discerning mechanisms of collaboration between signal transduction pathways activated by BMPs and IGFs in bone.
由局部合成的胰岛素样生长因子-I(IGF-I)或胰岛素样生长因子-II(IGF-II)通过IGF-I受体发出的信号,对于正常骨骼发育以及整个生命周期中的骨重塑和修复至关重要。在大多数组织中,IGF的作用受到IGF结合蛋白(IGFBPs)的调节。IGFBP-5是骨骼中含量最丰富的IGFBP,先前的研究表明,它在培养中可能增强或抑制成骨细胞分化,在体内可能促进或阻碍骨骼生长。为了解决这些相互矛盾的观察结果并识别IGFBP-5在骨骼中的作用机制,我们研究了其在成骨细胞分化和原代骨培养中的作用。纯化的野生型(WT)小鼠IGFBP-5或表达IGFBP-5WT的重组腺病毒在最早阶段均可阻止细胞因子骨形态发生蛋白(BMP)-2诱导的成骨分化,而不干扰BMP介导的信号传导,而IGF结合减少的类似物(N结构域突变体)则无效。当在骨细胞成熟的后期添加时,IGFBP-5WT而非IGFBP-5N可阻止矿化,在短期原代培养中阻止小鼠跖骨的纵向生长,并抑制其软骨内骨化。由于对IGFBPs亲和力降低的IGF-I变体(R3IGF-I)在存在IGFBP-5WT的情况下促进了完全的成骨分化,我们的结果表明IGFBP-5干扰了成骨细胞中的IGF作用,并为识别骨中由BMP和IGF激活的信号转导途径之间的协作机制提供了框架。