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Protective role of complement signaling in Kawasaki disease vasculitis
Asli E. Atici, Begüm Kocatürk, Benjamin L. Ross, Emily A. Aubuchon, Rebecca A. Porritt, Thacyana T. Carvalho, Takahiro Namba, Youngho Lee, Magali Noval Rivas, Moshe Arditi
Asli E. Atici, Begüm Kocatürk, Benjamin L. Ross, Emily A. Aubuchon, Rebecca A. Porritt, Thacyana T. Carvalho, Takahiro Namba, Youngho Lee, Magali Noval Rivas, Moshe Arditi
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Research Article Immunology Inflammation Vascular biology

Protective role of complement signaling in Kawasaki disease vasculitis

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Abstract

Kawasaki disease (KD) is an acute febrile systemic vasculitis of unknown etiology and the leading cause of acquired heart disease among children. Complement activation has long been observed in patients with acute KD; however, its contribution to disease development remains unknown. Here, using publicly available datasets, we showed that patients with acute KD exhibited higher expression of complement products in whole blood, consistent with the activation of the complement pathway. Similarly, in the Lactobacillus casei cell wall extract (LCWE) murine model of KD, LCWE injection induced increased expression of complement products in cardiovascular tissues, suggestive of activation of the complement pathways. C3-deficient mice or WT mice treated with the complement C5a receptor 1 (C5ar1) antagonist developed significantly more severe LCWE-induced cardiovascular lesions and vasculitis. Furthermore, we observed that LCWE binds to serum C3, an opsonizing factor that labels microbial targets for clearance, and LCWE deposition in the liver was significantly higher in C3-deficient mice compared with WT mice. Overall, our data indicate that blocking the complement system significantly exacerbates LCWE-induced KD vasculitis, likely by impairing C3-mediated clearance of LCWE. These data suggest that the complement pathway may play a protective role in KD pathogenesis by promoting clearance of a potential bacterial or viral trigger of KD.

Authors

Asli E. Atici, Begüm Kocatürk, Benjamin L. Ross, Emily A. Aubuchon, Rebecca A. Porritt, Thacyana T. Carvalho, Takahiro Namba, Youngho Lee, Magali Noval Rivas, Moshe Arditi

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Figure 3

Complement pathway expression in abdominal aortas from LCWE-injected mice.

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Complement pathway expression in abdominal aortas from LCWE-injected mic...
(A) Differentially regulated genes (adjusted P < 0.05, fold change > 2) related to the complement pathway analyzed from abdominal aortas of PBS- or LCWE-injected mice at 2 weeks after injection (GSE141072). (B) mRNA expression of complement signature genes C3, C1qa, C3ar1, and C5ar1 measured by qRT-PCR from abdominal aortas of PBS- and LCWE-injected mice, normalized to Hprt (n = 5/group). (C) UMAP plot of all abdominal aorta cells isolated from PBS-injected (n = 5,386 cells, blue) and LCWE-injected (n = 5,091cells, red) WT mice. Each panel shows a gradient expression of selected genes related to the complement pathway. Grey-yellow-red gradient: min-max normalization of CP10K expression (GSE178765). Data are presented as mean ± SEM. *P < 0.05, **P < 0.01, ***P < 0.001, and ****P < 0.001 by unpaired 2-tailed t test (A and B). CP10K indicates counts per 10,000 reads. VSMC, vascular smooth muscle cell; Mono: monocytes.

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