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Isolating Mesangiogenic Progenitor Cells (MPCs) from Human Bone Marrow
Published on: July 15, 2016
Primary mesenchymal cells isolated from SPARC-null mice exhibit altered morphology and rates of proliferation
A D Bradshaw1, A Francki, K Motamed
1Department of Biological Structure, University of Washington, Seattle, Washington 98195, USA.
Abstract:
SPARC (secreted protein acidic and rich in cysteine)/BM 40/osteonectin is a matricellular protein shown to function as a counteradhesive factor that induces cell rounding and as an inhibitor of cell proliferation. These activities have been defined in cell culture, in which interpretation has been complicated by the presence of endogenous SPARC. We therefore sought to determine whether cell shape and proliferation would be affected by the absence of SPARC. Mesangial cells, fibroblasts, and aortic smooth muscle cells were isolated from SPARC-null and age-matched, wild-type mice. In contrast to wild-type cells, SPARC-null mesangial cells exhibited a flat morphology and an altered actin cytoskeleton. In addition, vinculin-containing focal adhesions were distributed over the center of SPARC-null cells, whereas in wild-type cells, the number of focal adhesions was reduced, and these structures were restricted largely to the cell periphery. Although the SPARC-null fibroblasts did not display overt differences in cell morphology, the cells responded to exogenous recombinant SPARC by rounding up in a manner similar to that of wild-type fibroblasts. Thus, the expression of endogenous SPARC is not required for the response of cells to SPARC. Additionally, SPARC-null mesangial cells, fibroblasts, and smooth muscle cells proliferated faster than their respective wild-type counterparts. Null cells also showed a greater sensitivity to the inhibition of cell cycle progression by the addition of recombinant SPARC. The increased proliferation rate of SPARC-null cells appeared to be mediated, at least in part, by an increase in the cell cycle regulatory protein cyclin A. We conclude that the expression of SPARC influences the cellular architecture of mesangial cells and that SPARC plays a role in the regulation of cell cycle in mesangial cells, fibroblasts, and smooth muscle cells.
Insights
Secreted protein acidic and rich in cysteine (SPARC) absence alters cell shape and increases proliferation. Cells lacking SPARC still respond to it, indicating its role in regulating cell cycle and architecture.
Area of Science:
- Biochemistry
- Cell Biology
- Extracellular Matrix Biology
Background:
- Secreted protein acidic and rich in cysteine (SPARC) is a matricellular protein influencing cell adhesion and proliferation.
- Endogenous SPARC complicates in vitro studies of its functions.
- Investigating SPARC-null cells clarifies its intrinsic cellular effects.
Purpose of the Study:
- To determine the impact of SPARC absence on cell morphology and proliferation.
- To assess if endogenous SPARC is necessary for cellular responses to SPARC.
- To elucidate SPARC's role in regulating cell cycle and cellular architecture.
Main Methods:
- Isolation of mesangial cells, fibroblasts, and aortic smooth muscle cells from SPARC-null and wild-type mice.
- Comparative analysis of cell morphology, actin cytoskeleton, and focal adhesions.
- Assessment of cell proliferation rates and response to recombinant SPARC.
- Quantification of cell cycle regulatory proteins, including cyclin A.
Main Results:
- SPARC-null mesangial cells displayed a flattened morphology with altered actin cytoskeleton and central focal adhesions.
- SPARC-null fibroblasts, while morphologically similar to wild-type, responded to exogenous SPARC by rounding.
- SPARC-null cells exhibited increased proliferation rates compared to wild-type cells.
- SPARC-null cells showed enhanced sensitivity to SPARC-mediated cell cycle inhibition, partly due to increased cyclin A.
Conclusions:
- SPARC expression significantly influences the cellular architecture of mesangial cells.
- SPARC plays a critical role in regulating the cell cycle of mesangial cells, fibroblasts, and smooth muscle cells.
- Endogenous SPARC is not required for cells to respond to exogenous SPARC, highlighting its direct functional impact.

