The Expression of Metalloproteinase-2, −9, and −14 and of Tissue Inhibitors-1 and −2 Is Developmentally Modulated During Osteogenesis In Vitro, the Mature Osteoblastic Phenotype Expressing Metalloproteinase-14
- 1 November 2000
- journal article
- Published by Oxford University Press (OUP) in Journal of Bone and Mineral Research
- Vol. 15 (11) , 2154-2168
- https://doi.org/10.1359/jbmr.2000.15.11.2154
Abstract
During osteogenesis, in vitro, of tibial-derived rat osteoblasts (ROB) and derived clones, changes occur in the interactions of mature osteoblasts with the endogenous extracellular matrix (ECM) and these culminate in the formation of tridimensional nodules, which become sites of mineral deposition. We investigated if these changes might be mediated by remodeling of ECM, and we focused our study on the neutral metalloproteinases (MMPs), known agents of matrix remodeling, and on their tissue inhibitors (TIMPs). We report that during in vitro differentiation, osteoblasts express the secreted MMP-2 and -9 and the membrane gelatinase MMP-14. These, along with the tissue inhibitors TIMP-1 and -2, are developmentally regulated according to the maturation stage of osteoblasts. Their levels change in a similar association with osteoblast phenotypic maturation in different populations of ROB, which take different times to complete osteogenesis in vitro. MMP-14 expression coincides in both cell populations with the mature osteoblastic phenotype and is localized in the cells forming nodules. MMP-2 and -9 are expressed diffusely in the osteoblast population. Developmentally associated changes in the activation of MMP-2 are detected, associated in their timing with the expression of MMP-14 in both populations of ROB, and MMP-14 activates pro-MMP-2 in vitro. Expression of messenger RNAs (mRNAs) for the three MMPs increases up to the time of nodule formation. At this stage, TIMP-1 mRNA levels are lowest. TIMP-2 mRNA decreases throughout osteogenesis. In situ hybridization in 7-day-old rat tibias shows the strongest expression of MMP-14 among osteogenic cells, in lining osteoblasts on the newly formed trabeculae under the growth plate, and on the endosteal surface of cortical bone. Our data support the concept that the developmentally regulated expression of MMP-14 triggers localized proteolysis within the osteogenic population, concomitant in vitro to nodule formation.Keywords
This publication has 75 references indexed in Scilit:
- Activation of MMP-2 by human GCT23 giant cell tumour cells induced by osteopontin, bone sialoprotein and GRGDSP peptides is RGD and cell shape change dependentInternational Journal of Cancer, 1998
- Cloning and Initial Characterization of Mouse Meltrin β and Analysis of the Expression of Four MetalloproteaseDisintegrins in Bone CellsPublished by Elsevier ,1998
- Three-dimensional Type I Collagen Lattices Induce Coordinate Expression of Matrix Metalloproteinases MT1-MMP and MMP-2 in Microvascular Endothelial CellsPublished by Elsevier ,1998
- Anti-α3 integrin antibody induces the activated form of matrix metalloprotease-2 (MMP-2) with concomitant stimulation of invasion through matrigel by human rhabdomyosarcoma cellsInternational Journal of Cancer, 1997
- Cell surface binding and activation of gelatinase A induced by expression of membrane‐type‐1‐matrix metalloproteinase (MT1‐MMP)FEBS Letters, 1996
- Parathyroid hormone-induced resorption in fetal rat limb bones is associated with production of the metalloproteinases collagenase and gelatinase BJournal of Bone and Mineral Research, 1996
- Release of Biological Activities from Quiescent Fibronectin by a Conformational Change and Limited Proteolysis by Matrix MetalloproteinasesBiochemistry, 1995
- Distribution of noncollagenous proteins in the matrix of adult human bone: Evidence of anatomic and functional heterogeneityJournal of Bone and Mineral Research, 1993
- Signal transduction through the fibronectin receptor induces collagenase and stromelysin gene expression.The Journal of cell biology, 1989
- Mouse osteoblasts synthesize collagenase in response to bone resorbing agentsBiochimica et Biophysica Acta (BBA) - General Subjects, 1984