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Published on: May 31, 2018
p21Cip1 is required for the development of monocytes and their response to serum transfer-induced arthritis
John C Scatizzi1, Jack Hutcheson, Emily Bickel
1Department of Molecular Microbiology and Immunology, Division of Rheumatology, School of Medicine, St. Louis University, St. Louis, Missouri 63104, USA. perlmanh@slu.edu
Abstract:
One of the central functions of cyclin-dependent kinase inhibitors, such as p21, p27, or p16, is to prevent entry into the cell cycle. However, the question remains as to whether they have other functions in the cell. We previously demonstrated that overexpression of p21 in fibroblasts isolated from patients with rheumatoid arthritis decreases the production of pro-inflammatory molecules. Overexpression of p21 has been also shown to reduce the development of experimental arthritis in mice and rats. To explore the role of endogenous p21 in the development of arthritis, we induced arthritis in p21(-/-) mice using the K/BxN serum transfer model of arthritis. Mice deficient in p21 were more resistant to serum transfer-induced arthritis (K/BxN) than wild-type (wt) control mice. Fewer macrophages were detected in p21(-/-) as compared to wt joints following transfer of K/BxN serum. Chemotaxis assays of bone marrow-derived macrophages from p21(-/-) and wt mice revealed no difference in migration. However, there was a substantial decrease in inflammatory monocytes circulating in peripheral blood and in monocyte precursors in bone marrow of p21(-/-) mice as compared to wt mice. Adoptive transfer of wt bone marrow-derived macrophages into p21(-/-) mice restored the sensitivity to serum transfer-induced arthritis. These data suggest a novel role for p21 in regulating the development and/or differentiation of monocytic populations that are crucial for the induction of inflammatory arthritis.
Insights
The cyclin-dependent kinase inhibitor p21 plays a novel role in regulating inflammatory arthritis by controlling the development and differentiation of monocytes, crucial immune cells involved in the disease process.
Area of Science:
- Immunology
- Cell Biology
- Rheumatology
Background:
- Cyclin-dependent kinase inhibitors (CKIs), like p21, p27, and p16, are known to inhibit cell cycle progression.
- Previous studies suggest p21 may have anti-inflammatory functions, reducing pro-inflammatory molecule production and experimental arthritis severity.
Purpose of the Study:
- To investigate the role of endogenous p21 in the development of inflammatory arthritis.
- To explore potential non-cell cycle regulatory functions of p21 in arthritis.
Main Methods:
- Induction of arthritis in p21-deficient (p21(-/-)) and wild-type (wt) mice using the K/BxN serum transfer model.
- Analysis of immune cell populations (macrophages, monocytes) in joints, peripheral blood, and bone marrow.
- Assessment of macrophage chemotaxis.
- Adoptive transfer experiments using bone marrow-derived macrophages.
Main Results:
- p21(-/-) mice exhibited reduced susceptibility to serum transfer-induced arthritis compared to wt mice.
- Fewer macrophages were present in the joints of p21(-/-) mice.
- A significant decrease in circulating inflammatory monocytes and bone marrow monocyte precursors was observed in p21(-/-) mice.
- Adoptive transfer of wt macrophages into p21(-/-) mice restored arthritis susceptibility.
Conclusions:
- Endogenous p21 is crucial for the development and/or differentiation of monocytic populations essential for inflammatory arthritis induction.
- p21 has a novel function in regulating monocyte development, impacting inflammatory arthritis pathogenesis.
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