Smith-specific regulatory T cells halt the progression of lupus nephritis

Author:

Eggenhuizen Peter J.ORCID,Cheong Rachel M. Y.ORCID,Lo Cecilia,Chang Janet,Ng Boaz H.,Ting Yi Tian,Monk Julie A.,Loh Khai L.ORCID,Broury AshrafORCID,Tay Elean S. V.,Shen Chanjuan,Zhong Yong,Lim StevenORCID,Chung Jia Xi,Kandane-Rathnayake Rangi,Koelmeyer Rachel,Hoi Alberta,Chaudhry Ashutosh,Manzanillo Paolo,Snelgrove Sarah L.ORCID,Morand Eric F.ORCID,Ooi Joshua D.ORCID

Abstract

AbstractAntigen-specific regulatory T cells (Tregs) suppress pathogenic autoreactivity and are potential therapeutic candidates for autoimmune diseases such as systemic lupus erythematosus (SLE). Lupus nephritis is associated with autoreactivity to the Smith (Sm) autoantigen and the human leucocyte antigen (HLA)-DR15 haplotype; hence, we investigated the potential of Sm-specific Tregs (Sm-Tregs) to suppress disease. Here we identify a HLA-DR15 restricted immunodominant Sm T cell epitope using biophysical affinity binding assays, then identify high-affinity Sm-specific T cell receptors (TCRs) using high-throughput single-cell sequencing. Using lentiviral vectors, we transduce our lead Sm-specific TCR into Tregs derived from patients with SLE who are anti-Sm and HLA-DR15 positive. Compared with polyclonal mock-transduced Tregs, Sm-Tregs potently suppress Sm-specific pro-inflammatory responses in vitro and suppress disease progression in a humanized mouse model of lupus nephritis. These results show that Sm-Tregs are a promising therapy for SLE.

Funder

Lupus Research Alliance

Department of Health | National Health and Medical Research Council

Amgen

U.S. Department of Defense

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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