Related Experiment Videos
Matrix metalloproteinases (MMP) and cathepsin K contribute differently to osteoclastic activities
Jean-Marie Delaissé1, Thomas L Andersen, Michael T Engsig
1Nordic Bioscience, Center for Clinical and Basic Research, DK-2730 Herlev, Denmark.
Abstract:
The best established proteolytic event of osteoclasts is bone matrix solubilization by the cysteine proteinase cathepsin K. Here, however, we draw the attention on osteoclastic activities depending on matrix metalloproteinases (MMPs). We discuss the observations supporting that MMPs contribute significantly to bone matrix solubilization in specific areas of the skeleton and in some developmental and pathological situations. Our discussion takes into account (1) the characteristics of the bone remodeling persisting in the absence of cathepsin K, (2) the ultrastructure of the resorption zone in response to inactivation of MMPs and of cathepsin K in different bone types, (3) bone resorption levels in MMP knockout mice compared to wild-type mice, (4) the identification of MMPs in osteoclasts and surrounding cells, and (5) the effect of different bone pathologies on the serum concentrations of specific collagen fragments believed to discriminate between cathepsin K and MMP cleavage. Next, we provide evidence that MMPs are very critical for osteoclast migration, thereby controlling also the cell-matrix interactions required for cell attachment/detachment. The evidence supporting this role is based on a model of osteoclast recruitment in primitive long bones, an assay of osteoclast invasion through collagen gel, and the effect of proteinase inhibitors/knockouts in these models. Furthermore, we mention observations indicating a role of MMPs in initiation of bone resorption. Finally, we emphasize the many distinct ways MMPs may alter focally the extracellular environment thereby regulating the osteoclast behavior. Although the understanding of MMPs in osteoclast biology is rapidly expanding, it is suspected that important roles remain to be discovered.
Insights
Matrix metalloproteinases (MMPs) play a crucial role in osteoclast bone resorption, migration, and cell-matrix interactions, complementing the function of cathepsin K in bone remodeling and pathology.
Area of Science:
- Bone Biology
- Cellular and Molecular Biology
- Biochemistry
Background:
- Osteoclast-mediated bone resorption is essential for skeletal homeostasis.
- Cathepsin K is a well-established enzyme involved in bone matrix solubilization.
- The role of matrix metalloproteinases (MMPs) in osteoclast function requires further elucidation.
Purpose of the Study:
- To investigate the contribution of MMPs to osteoclast activity beyond cathepsin K.
- To explore the role of MMPs in bone matrix solubilization, osteoclast migration, and cell-matrix interactions.
- To understand the implications of MMPs in various skeletal developmental and pathological contexts.
Main Methods:
- Analysis of bone remodeling in cathepsin K and MMP knockout mice.
- Ultrastructural examination of osteoclast resorption zones.
- Assessment of osteoclast migration and invasion assays.
- Detection of MMPs in osteoclasts and surrounding cells.
- Measurement of serum collagen fragments in bone pathologies.
Main Results:
- MMPs significantly contribute to bone matrix solubilization in specific skeletal areas and conditions.
- MMPs are critical for osteoclast migration and regulate cell-matrix interactions.
- Evidence suggests MMPs are involved in the initiation of bone resorption.
- MMPs influence the extracellular environment, thereby modulating osteoclast behavior.
Conclusions:
- MMPs play diverse and significant roles in osteoclast biology, complementing cathepsin K.
- MMPs are key regulators of osteoclast migration and attachment/detachment.
- Further research into MMPs' functions in osteoclast biology is warranted.