IgG1 and IVIg induce inhibitory ITAM signaling through FcγRIII controlling inflammatory responses

Author:

Aloulou Meryem12,Ben Mkaddem Sanae12,Biarnes-Pelicot Martine12,Boussetta Tarek12,Souchet Hervé12,Rossato Elisabetta12,Benhamou Marc12,Crestani Bruno234,Zhu Zhou5,Blank Ulrich12,Launay Pierre12,Monteiro Renato C.126

Affiliation:

1. Inserm U699, Paris, France;

2. Université Paris Diderot, Sorbonne Paris Cité, Inflamex Laboratory of Excellence, Faculté de Médecine, Site Xavier Bichat, Paris, France;

3. Inserm U700, Paris, France;

4. Service de Pneumologie, Assistance Publique–Hôpitaux de Paris, Hôpital Bichat, Paris, France;

5. Division of Allergy and Clinical Immunology, Johns Hopkins Asthma and Allergy Center, Baltimore, MD; and

6. Assistance Publique–Hôpitaux de Paris, Hôpital Bichat, Service d'Immunologie, Paris, France

Abstract

AbstractIntravenous immunoglobulin (IVIg) has been used in the treatment of several autoimmune and inflammatory diseases. However, its mechanism of action remains incompletely understood. Here, we investigated the possibility that IVIg induces its anti-inflammatory effects through activating Fcγ receptors bearing an immunoreceptor tyrosine-based activation motif (ITAM) in the FcRγ signaling adaptor. Recently, the concept of inhibitory ITAM (ITAMi) has emerged as a new means to negatively control the immune response. We found that interaction of FcRγ-associated mouse or human FcγRIII with uncomplexed IgG1 or IVIg, or with bivalent anti-FcγRIII F(ab′)2 reduced calcium responses, reactive oxygen species production, endocytosis, and phagocytosis, induced by heterologous activating receptors on monocyte/macrophages and FcγRIII+ transfectants. Inhibition required the ITAMi configuration of the FcγRIII-associated FcRγ subunit and SHP-1 recruitment involving formation of intracellular “inhibisome” clusters containing FcγRIII, and the targeted heterologous activating receptor. IVIg as well as anti-FcγRIII treatments controlled the development of nonimmune mediated inflammation in vivo independently of FcγRIIB. These results demonstrate that circulating immunoglobulins (Ig)Gs are not functionally inert but act through continuous interaction with FcγRIII-inducing ITAMi signaling to maintain immune homeostasis. These data support a new mechanism of action for IVIg and demonstrate the therapeutic potential of FcγRIIIA targeting in inflammation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference50 articles.

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