Czárán, Domonkos and Sasvári, Péter and Horváth, Ádám István and Ella, Krisztina and Sűdy, Ágnes Réka and Borbély, Éva and Rusznák, Kitti and Czéh, Boldizsár and Mócsai, Attila and Helyes, Zsuzsanna and Csépányi-Kömi, Roland (2023) Lacking ARHGAP25 Mitigates the Symptoms of Autoantibody-induced Arthritis in Mice. FRONTIERS IN IMMUNOLOGY, 14. No.-1182278. ISSN 1664-3224
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Abstract
Objective: Despite intensive research on rheumatoid arthritis, the pathomechanism of the disease is still not fully understood and the treatment has not been completely resolved. Previously we demonstrated that the GTPase-activating protein, ARHGAP25 has a crucial role in the regulation of basic phagocyte functions. Here we investigate the role of ARHGAP25 in the complex inflammatory process of autoantibody-induced arthritis. Methods: Wild-type and ARHGAP25 deficient (KO) mice on a C57BL/6 background, as well as bone marrow chimeric mice, were treated i.p. with the K/BxN arthritogenic or control serum, and the severity of inflammation and pain-related behavior was measured. Histology was prepared, leukocyte infiltration, cytokine production, myeloperoxidase activity, and superoxide production were determined, and comprehensive western blot analysis was conducted. Results: In the absence of ARHGAP25, the severity of inflammation, joint destruction, and mechanical hyperalgesia significantly decreased, similarly to phagocyte infiltration, IL-1b, and MIP-2 levels in the tibiotarsal joint, whereas superoxide production or myeloperoxidase activity was unchanged. We observed a significantly mitigated phenotype in KO bone marrow chimeras as well. In addition, fibroblast-like synoviocytes showed comparable expression of ARHGAP25 to neutrophils. Significantly reduced ERK1/2, MAPK, and I-kB protein signals were detected in the arthritic KO mouse ankles. Conclusion: Our findings suggest that ARHGAP25 has a key role in the pathomechanism of autoantibody-induced arthritis in which it regulates inflammation via the I-kB/NF-kB/IL-1b axis with the involvement of both immune cells and fibroblast-like synoviocytes.
Item Type: | Article |
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Subjects: | R Medicine / orvostudomány > R1 Medicine (General) / orvostudomány általában > R850-854 Experimental medicine / kisérleti orvostudomány |
SWORD Depositor: | MTMT SWORD |
Depositing User: | MTMT SWORD |
Date Deposited: | 06 Sep 2023 12:15 |
Last Modified: | 06 Sep 2023 12:15 |
URI: | http://real.mtak.hu/id/eprint/172812 |
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