Abstract

Bone morphogenetic proteins (BMPs) belong to the TGF-beta superfamily and play an important role in development and in many cellular processes. We have found that BMP-2, BMP-6, and BMP-9 induce the most potent osteogenic differentiation of mesenchymal stem cells. Expression profiling analysis has revealed that the Inhibitors of DNA binding/differentiation (Id)-1, Id-2, and Id-3 are among the most significantly up-regulated genes upon BMP-2, BMP-6, or BMP-9 stimulation. Here, we sought to determine the functional role of these Id proteins in BMP-induced osteoblast differentiation. We demonstrated that the expression of Id-1, Id-2, and Id-3 genes was significantly induced at the early stage of BMP-9 stimulation and returned to basal levels at 3 days after stimulation. RNA interference-mediated knockdown of Id expression significantly diminished the BMP-9-induced osteogenic differentiation of mesenchymal progenitor cells. Surprisingly, a constitutive overexpression of these Id genes also inhibited osteoblast differentiation initiated by BMP-9. Furthermore, we demonstrated that BMP-9-regulated Id expression is Smad4-dependent. Overexpression of the three Id genes was shown to promote cell proliferation that was coupled with an inhibition of osteogenic differentiation. Thus, our findings suggest that the Id helix-loop-helix proteins may play an important role in promoting the proliferation of early osteoblast progenitor cells and that Id expression must be down-regulated during the terminal differentiation of committed osteoblasts, suggesting that a balanced regulation of Id expression may be critical to BMP-induced osteoblast lineage-specific differentiation of mesenchymal stem cells.

Highlights

  • Bone morphogenetic proteins (BMPs) belong to the TGF-␤ superfamily and play an important role in development and in many cellular processes

  • We have recently demonstrated that BMP-2, BMP-6, and BMP-9 represent the most potent BMPs in promoting osteogenic differentiation [15]

  • Through a comparative expression profiling analysis of genes whose expression was only regulated by osteogenic BMPs, we found that Inhibitors of DNA binding/differentiation (Id)-1, Id-2, and Id-3 were among the most significantly up-regulated genes upon BMP-2, BMP-6, or BMP-9 stimulation [17]

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Summary

Ids as Signaling Mediators of Osteogenic BMPs

Tion of target genes containing E-boxes (CANNTG) in their promoters. Id proteins dimerize with bHLH proteins, but the resultant heterodimers are unable to bind to DNA because Id proteins lack the basic domains for DNA interaction. We sought to determine the functional role of Id proteins in BMP-induced osteoblast differentiation. We first conducted expression profiling analysis and identified that Id-1, Id-2, and Id-3 were up-regulated in osteogenic BMPstimulated mesenchymal stem cells. RNAi-mediated knockdown of Id expression diminished the BMP-9-induced osteogenic differentiation of mesenchymal progenitors. Our results demonstrate that Id proteins may play an important role in promoting the proliferation of early osteoblast progenitor cells and that Id expression must be down-regulated during terminal differentiation of committed osteoblasts. This suggests that a balanced regulation of Id gene expression may be critical to BMP-induced bone formation

EXPERIMENTAL PROCEDURES
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