A subset of antibodies targeting citrullinated proteins confers protection from rheumatoid arthritis.
Yibo HeChangrong GeÀlex Moreno-GiróBingze XuChristian Michel BeuschKatalin SandorJie SuLei ChengErik LönnblomChristina LundqvistLinda M SlotDongmei TongVilma UrbonaviciuteBibo LiangTaotao LiGonzalo Fernandez LahoreMike AounVivianne MalmströmTheo RispensPatrik ErnforsCamilla I SvenssonHans Ulrich SchererRené E M ToesInger GjertssonOlov EkwallRoman A ZubarevRickard HolmdahlPublished in: Nature communications (2023)
Although elevated levels of anti-citrullinated protein antibodies (ACPAs) are a hallmark of rheumatoid arthritis (RA), the in vivo functions of these antibodies remain unclear. Here, we have expressed monoclonal ACPAs derived from patients with RA, and analyzed their functions in mice, as well as their specificities. None of the ACPAs showed arthritogenicity nor induced pain-associated behavior in mice. However, one of the antibodies, clone E4, protected mice from antibody-induced arthritis. E4 showed a binding pattern restricted to skin, macrophages and dendritic cells in lymphoid tissue, and cartilage derived from mouse and human arthritic joints. Proteomic analysis confirmed that E4 strongly binds to macrophages and certain RA synovial fluid proteins such as α-enolase. The protective effect of E4 was epitope-specific and dependent on the interaction between E4-citrullinated α-enolase immune complexes with FCGR2B on macrophages, resulting in increased IL-10 secretion and reduced osteoclastogenesis. These findings suggest that a subset of ACPAs have therapeutic potential in RA.
Keyphrases
- rheumatoid arthritis
- disease activity
- dendritic cells
- high fat diet induced
- ankylosing spondylitis
- interstitial lung disease
- high glucose
- endothelial cells
- diabetic rats
- drug induced
- immune response
- systemic lupus erythematosus
- neuropathic pain
- insulin resistance
- wild type
- type diabetes
- metabolic syndrome
- oxidative stress
- soft tissue
- skeletal muscle
- spinal cord
- binding protein
- multiple myeloma
- adipose tissue
- systemic sclerosis
- transcription factor
- small molecule