Marginal zone B cells produce ‘natural’ atheroprotective IgM antibodies in a T cell–dependent manner

Author:

Harrison James1,Newland Stephen A1,Jiang Wei1,Giakomidi Despoina1,Zhao Xiaohui1,Clement Marc12,Masters Leanne1,Corovic Andrej1,Zhang Xian3,Drago Fabrizio4,Ma Marcella5,Ozsvar Kozma Maria6,Yasin Froher1,Saady Yuta1,Kothari Hema4ORCID,Zhao Tian X1,Shi Guo-Ping3ORCID,McNamara Coleen A4,Binder Christoph J6,Sage Andrew P1,Tarkin Jason M1ORCID,Mallat Ziad17ORCID,Nus Meritxell1ORCID

Affiliation:

1. Department of Medicine, University of Cambridge , Cambridge Biomedical Campus, Cambridge , UK

2. Laboratory for Vascular Translational Sciences (LVTS), Université de Paris, INSERM U1148 , Paris , France

3. Department of Medicine, Brigham and Woman’s Hospital, Harvard Medical School , Boston, MA , USA

4. Division of Cardiovascular Medicine, Department of Medicine, University of Virginia , Charlottesville, VA , USA

5. Wellcome-MRC Institute of Metabolic Science and Medical Research Council Metabolic Diseases Unit, University of Cambridge , UK

6. Department of Laboratory Medicine, Medical University of Vienna , Vienna , Austria

7. PARCC Inserm U970, Universite de Paris , Paris , France

Abstract

Abstract Aims The adaptive immune response plays an important role in atherosclerosis. In response to a high-fat/high-cholesterol (HF/HC) diet, marginal zone B (MZB) cells activate an atheroprotective programme by regulating the differentiation and accumulation of ‘poorly differentiated’ T follicular helper (Tfh) cells. On the other hand, Tfh cells activate the germinal centre response, which promotes atherosclerosis through the production of class-switched high-affinity antibodies. We therefore investigated the direct role of Tfh cells and the role of IL18 in Tfh differentiation in atherosclerosis. Methods and results We generated atherosclerotic mouse models with selective genetic deletion of Tfh cells, MZB cells, or IL18 signalling in Tfh cells. Surprisingly, mice lacking Tfh cells had increased atherosclerosis. Lack of Tfh not only reduced class-switched IgG antibodies against oxidation-specific epitopes (OSEs) but also reduced atheroprotective natural IgM-type anti-phosphorylcholine (PC) antibodies, despite no alteration of natural B1 cells. Moreover, the absence of Tfh cells was associated with an accumulation of MZB cells with substantially reduced ability to secrete antibodies. In the same manner, MZB cell deficiency in Ldlr−/− mice was associated with a significant decrease in atheroprotective IgM antibodies, including natural anti-PC IgM antibodies. In humans, we found a positive correlation between circulating MZB-like cells and anti-OSE IgM antibodies. Finally, we identified an important role for IL18 signalling in HF/HC diet–induced Tfh. Conclusion Our findings reveal a previously unsuspected role of MZB cells in regulating atheroprotective ‘natural’ IgM antibody production in a Tfh-dependent manner, which could have important pathophysiological and therapeutic implications.

Funder

British Heart Foundation

Intermediate Basic Science Fellowship

BHF Project Grants

BHF Chair of Cardiovascular Medicine

Leducq Foundation

H2020

Wellcome Trust

Publisher

Oxford University Press (OUP)

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