RANK+TLR2+ myeloid subpopulation converts autoimmune to joint destruction in rheumatoid arthritis

Author:

Zhang Weixin12ORCID,Noller Kathleen3ORCID,Crane Janet14,Wan Mei1ORCID,Wu Xiaojun5,Cahan Patrick3,Cao Xu13ORCID

Affiliation:

1. Department of Orthopaedic Surgery, Johns Hopkins University

2. Zhejiang Chinese Medical University

3. Department of Biomedical Engineering, Johns Hopkins University

4. Division of Pediatric Endocrinology, Johns Hopkins University School of Medicine

5. Department of Pathology, Johns Hopkins Medical Institutions

Abstract

Joint destruction is the major clinic burden in patients with rheumatoid arthritis (RA). It is unclear, though, how this autoimmune disease progresses to the point of deterioration of the joint. Here, we report that in a mouse model of RA the upregulation of TLR2 expression and its α(2,3) sialylation in RANK+ myeloid monocytes mediate the transition from autoimmunity to osteoclast fusion and bone resorption, resulting in joint destruction. The expression of α(2,3) sialyltransferases was significantly increased in RANK+TLR2+ myeloid monocytes, and their inhibition or treatment with a TLR2 inhibitor blocked osteoclast fusion. Notably, analysis of our single-cell RNA-sequencing (scRNA-seq) libraries generated from RA mice revealed a novel RANK+TLR2 a subset that negatively regulated osteoclast fusion. Importantly, the RANK+TLR2+ subset was significantly diminished with the treatments, whereas the RANK+TLR2 subset was expanded. Moreover, the RANK+TLR2 subset could differentiate into a TRAP+ osteoclast lineage, but the resulting cells did not fuse to form osteoclasts. Our scRNA-seq data showed that Maf is highly expressed in the RANK+TLR2 subset, and the α(2,3) sialyltransferase inhibitor-induced Maf expression in the RANK+TLR2+ subset. The identification of a RANK+TLR2 subset provides a potential explanation for TRAP+ mononuclear cells in bone and their anabolic activity. Further, TLR2 expression and its α(2,3) sialylation in the RANK+ myeloid monocytes could be effective targets to prevent autoimmune-mediated joint destruction.

Funder

National Institute on Aging

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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