Semaphorin 4D inhibits neutrophil activation and is involved in the pathogenesis of neutrophil-mediated autoimmune vasculitis

Masayuki Nishide(Osaka International University), Satoshi Nojima(Soka University), Daisuke Ito(Osaka University), Hyota Takamatsu(Osaka University), Shohei Koyama(Osaka International University), Sujin Kang(Osaka International University), Tetsuya Kimura(Osaka University), Keiko Morimoto(Osaka University), Takashi Hosokawa(Osaka International University), Yoshitomo Hayama(Osaka International University), Yuhei Kinehara(Osaka International University), Yasuhiro Kato(Osaka University), Takeshi Nakatani(Osaka International University), Yoshimitsu Nakanishi(Japan Agency for Medical Research and Development), Takeshi Tsuda(Osaka University), Jeong Hoon Park(Osaka International University), Tôru Hirano(Osaka University), Yoshihito Shima(Osaka University), Masashi Narazaki(Osaka University), Eiichi Morii(Osaka University), Atsushi Kumanogoh(Osaka International University)
Annals of the Rheumatic Diseases
April 17, 2017
Cited by 69Open Access
Full Text

Abstract

OBJECTIVES: Inappropriate activation of neutrophils plays a pathological role in antineutrophil cytoplasmic antibody (ANCA)-associated vasculitis (AAV). The aim of this study was to investigate the functions of semaphorin 4D (SEMA4D) in regulation of neutrophil activation, and its involvement in AAV pathogenesis. METHODS: mice neutrophils were cultured with an endothelial cell line (MS1) stained with SYTOX green, and subjected to neutrophil extracellular trap (NET) formation assays. The efficacy of treating human neutrophils with recombinant plexin B2 was assessed by measuring the kinetic oxidative burst and NET formation assays. RESULTS: Serum levels of soluble SEMA4D were elevated in patients with AAV and correlated with disease activity scores. Cell-surface expression of SEMA4D was downregulated in neutrophils from patients with AAV, a consequence of proteolytic cleavage of membrane SEMA4D. Soluble SEMA4D exerted pro-inflammatory effects on endothelial cells. Membranous SEMA4D on neutrophils bound to plexin B2 on endothelial cells, and this interaction decreased NET formation. Recombinant plexin B2 suppressed neutrophil Rac1 activation through SEMA4D's intracellular domain, and inhibited pathogen-induced or ANCA-induced oxidative burst and NET formation. CONCLUSIONS: Neutrophil surface SEMA4D functions as a negative regulator of neutrophil activation. Proteolytic cleavage of SEMA4D as observed in patients with AAV may amplify neutrophil-mediated inflammatory responses. SEMA4D is a promising biomarker and potential therapeutic target for AAV.


Related Papers

No related papers found

Powered by citation graph analysis