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Positive and negative regulation of the Fcγ receptor–stimulating activity of RNA-containing immune complexes by RNase
Ryota Naito, … , Akio Morinobu, Hisashi Arase
Ryota Naito, … , Akio Morinobu, Hisashi Arase
Published July 11, 2023
Citation Information: JCI Insight. 2023;8(16):e167799. https://doi.org/10.1172/jci.insight.167799.
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Research Article

Positive and negative regulation of the Fcγ receptor–stimulating activity of RNA-containing immune complexes by RNase

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Abstract

The U1RNP complex, Ro/SSA, and La/SSB are major RNA-containing autoantigens. Immune complexes (ICs) composed of RNA-containing autoantigens and autoantibodies are suspected to be involved in the pathogenesis of some systemic autoimmune diseases. Therefore, RNase treatment, which degrades RNA in ICs, has been tested in clinical trials as a potential therapeutic agent. However, no studies to our knowledge have specifically evaluated the effect of RNase treatment on the Fcγ receptor–stimulating (FcγR-stimulating) activity of RNA-containing ICs. In this study, using a reporter system that specifically detects FcγR-stimulating capacity, we investigated the effect of RNase treatment on the FcγR-stimulating activity of RNA-containing ICs composed of autoantigens and autoantibodies from patients with systemic autoimmune diseases such as systemic lupus erythematosus. We found that RNase enhanced the FcγR-stimulating activity of Ro/SSA- and La/SSB-containing ICs, but attenuated that of the U1RNP complex–containing ICs. RNase decreased autoantibody binding to the U1RNP complex, but increased autoantibody binding to Ro/SSA and La/SSB. Our results suggest that RNase enhances FcγR activation by promoting the formation of ICs containing Ro/SSA or La/SSB. Our study provides insights into the pathophysiology of autoimmune diseases involving anti-Ro/SSA and anti-La/SSB autoantibodies, and into the therapeutic application of RNase treatment for systemic autoimmune diseases.

Authors

Ryota Naito, Koichiro Ohmura, Shuhei Higuchi, Wataru Nakai, Masako Kohyama, Tsuneyo Mimori, Akio Morinobu, Hisashi Arase

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Figure 1

Quantitative measurement of FcγRIIIA-stimulating activity using NFAT-GFP reporter cells.

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Quantitative measurement of FcγRIIIA-stimulating activity using NFAT-GFP...
(A) Schema of FcγRIIIA-transfected NFAT-GFP reporter cells (FcγRIIIA-reporter cells). (B) The reporter cells were stained with an anti-FLAG monoclonal antibody (mAb) and anti-FcγRIIIA mAb to examine FLAG-tagged FcRγ chain and FcγRIIIA expression. Shaded histograms represent isotype controls. (C) Activation of reporter cells by FcγRIIIA cross-linking stimulation by immobilized anti-FcγRIIIA mAb. Shaded histograms represent isotype controls. (D) FcγRIIIA stimulation by immune complexes (ICs) composed of HEL (50 ng/well) and anti-HEL human IgG1 (250 ng/well). Shaded histograms represent parental cells. (E) GFP expression of the FcγRIIIA reporter cells in relation to the serially 2-fold diluted HEL-IC (max: HEL 100 ng/well, anti-HEL IgG1 250 ng/well). FcγRIIIA, FcγRIIIA-reporter cells; parent, reporter cells lacking FcγRIIIA; isotype, human IgG1 isotype control.

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