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Published on: May 27, 2015
Complement C3 is expressed by mast cells in cutaneous vasculitis and is degraded by chymase
Tiina Lipitsä1, Anita Naukkarinen2, Joel Laitala1,3
1Department of Dermatology, Kuopio University Hospital, University of Eastern Finland, P.O. Box 100, 70029, Kuopio, Finland.
Insights
Mast cells in skin express complement factor C3, a key protein in inflammation. Chymase, released by mast cells, degrades C3 and its active form C3a, potentially controlling C3-related inflammation in vasculitis.
Area of Science:
- Immunology
- Dermatology
- Complement System
Background:
- Mast cells, particularly tryptase(+) and chymase(+) types, are implicated in cutaneous leukocytoclastic vasculitis pathogenesis.
- The roles of complement factor C3 and mast cell-derived chymase in this condition require further elucidation.
Purpose of the Study:
- To investigate the presence of C3 within mast cells in vasculitis biopsies.
- To determine the interaction between mast cell chymase and C3.
- To explore the functional consequences of this interaction on mast cell mediators.
Main Methods:
- Double immunohistochemical staining of vasculitis biopsy cryosections for C3c and mast cell markers (tryptase, chymase).
- In vitro treatment of cryosections and purified C3/C3a/IgG with recombinant human chymase (rh-chymase), followed by immunofluorescence and SDS-PAGE analysis.
- Assessment of tryptase and histamine release from LAD2 mast cells upon rh-chymase treatment of C3.
Main Results:
- C3c immunoreactivity was observed in mast cells in healthy skin and vasculitis lesions (IP and PP), increasing with lesion severity.
- A subset of chymase(+) mast cells showed proximity to C3c(+) vessels.
- Rh-chymase treatment degraded C3 and C3a but not immunoglobulins or IgG.
- Degradation of C3 by rh-chymase led to tryptase and histamine release, while rh-chymase degraded C3a, inhibiting its activity.
Conclusions:
- Mast cells serve as a source of C3 during both early and late stages of vasculitis.
- Rh-chymase degrades native C3, vessel-associated C3c, and biologically active C3a.
- Chymase activity may regulate C3-dependent pathological processes in vasculitis.
Abstract:
The complement factor C3 and chymase released from tryptase(+), chymase(+) mast cells may be involved in the pathogenesis of cutaneous leukocytoclastic vasculitis. To study whether mast cells contain C3 in vasculitis and whether chymase interacts with C3, cryosections from vasculitis biopsies were double-stained histochemically for C3c in tryptase(+) mast cells, as well as for chymase and vessel wall C3c, or they were treated with 5 µg/ml rh-chymase for 24 h followed by immunofluorescence (IF) analysis of C3c, IgG, IgM and IgA. The effect of rh-chymase on purified human C3, C3a and IgG was studied using SDS-PAGE electrophoresis and LAD2 mast cell cultures. The results show that 34.2 ± 17.9, 37.4 ± 15.5 and 43.4 ± 18.6 % (mean ± SD) of the mast cells express C3c immunoreactivity in the healthy skin, initial petechial (IP) and palpable purpura (PP) lesions, respectively. About 9.4-12.1 % of the chymase(+) mast cells were in apparent contact with C3c(+) vessels in IP and PP. The treatment of cryosections with rh-chymase decreased the IF staining of C3c, but not that of immunoglobulins. In SDS-PAGE, 1-10 µg/ml rh-chymase degraded the alpha- and beta-chains of C3, but did not degrade IgG. Unexpectedly, the rh-chymase treatment of C3 produced fragments that resulted in the release of tryptase and histamine from LAD2 cells. However, rh-chymase degraded C3a and consequently inhibited C3a activity on LAD2. In conclusion, mast cells can be one source for C3 in the early and late phases of vasculitis pathogenesis. However, rh-chymase degraded native C3, vessel wall C3c, and biologically active C3a. Therefore, chymase may control C3-related pathology.
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