Adaptive plasticity of IL-10(+) and IL-35(+) T-reg cells cooperatively promotes tumor T cell exhaustion
NATURE IMMUNOLOGY
Authors: Sawant, Deepali, V; Yano, Hiroshi; Chikina, Maria; Zhang, Qianxia; Liao, Mengting; Liu, Chang; Callahan, Derrick J.; Sun, Zhe; Sun, Tao; Tabib, Tracy; Pennathur, Arjun; Corry, David B.; Luketich, James D.; Lafyatis, Robert; Chen, Wei; Poholek, Amanda C.; Bruno, Tullia C.; Workman, Creg J.; Vignali, Dario A. A.
Abstract
Regulatory T cells (T-reg cells) maintain host self-tolerance but are a major barrier to effective cancer immunotherapy. T-reg cells subvert beneficial anti-tumor immunity by modulating inhibitory receptor expression on tumor-infiltrating lymphocytes (TILs); however, the underlying mediators and mechanisms have remained elusive. Here, we found that the cytokines IL-10 and IL-35 (Ebi3-IL-12 alpha heterodimer) were divergently expressed by T-reg cell subpopulations in the tumor microenvironment (TME) and cooperatively promoted intratumoral T cell exhaustion by modulating several inhibitory receptor expression and exhaustion-associated transcriptomic signature of CD8(+) TILs. While expression of BLIMP1 (encoded by Prdm1) was a common target, IL-10 and IL-35 differentially affected effector T cell versus memory T cell fates, respectively, highlighting their differential, partially overlapping but non-redundant regulation of anti-tumor immunity. Our results reveal previously unappreciated cooperative roles for T-reg cell-derived IL-10 and IL-35 in promoting BLIMP1-dependent exhaustion of CD8(+) TILs that limits effective anti-tumor immunity.
Integrative analysis reveals CD38 as a therapeutic target for plasma cell-rich pre-disease and established rheumatoid arthritis and systemic lupus erythematosus
ARTHRITIS RESEARCH & THERAPY
Authors: Cole, Suzanne; Walsh, Alice; Yin, Xuefeng; Wechalekar, Mihir D.; Smith, Malcolm D.; Proudman, Susanna M.; Veale, Douglas J.; Fearon, Ursula; Pitzalis, Costantino; Humby, Frances; Bombardieri, Michele; Axel, Amy; Adams, Homer, III; Chiu, Christopher; Sharp, Michael; Alvarez, John; Anderson, Ian; Madakamuti, Loui; Nagpal, Sunil; Guo, Yanxia
Abstract
Background: Plasmablasts and plasma cells play a key role in many autoimmune diseases, such as rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE). This study was undertaken to evaluate the potential of targeting CD38 as a plasma cell/plasmablast depletion mechanism by daratumumab in the treatment of patients with RA and SLE. Methods: RNA-sequencing analysis of synovial biopsies from various stages of RA disease progression, flow cytometry analysis of peripheral blood mononuclear cells (PBMC) from patients with RA or SLE and healthy donors, immunohistochemistry assessment (IHC) of synovial biopsies from patients with early RA, and ex vivo immune cell depletion assays using daratumumab (an anti-CD38 monoclonal antibody) were used to assess CD38 as a therapeutic target. Results: We demonstrated that the plasma cell/plasmablast-related genes CD38, XBP1, IRF4, PRDM1, IGJ and TNFSF13B are significantly up-regulated in synovial biopsies from patients with arthralgia, undifferentiated arthritis (UA), early RA and established RA as compared to healthy controls and control patients with osteoarthritis. In addition, the highest CD38 expression was observed on plasma cells and plasmablasts compared to natural killer (NK) cells, classical dendritic cells (DCs), plasmacytoid DCs (pDCs) and T cells, in blood from healthy controls and patients with SLE and RA. Furthermore, IHC showed CD38 staining in the same region as CD3 and CD138 staining in synovial tissue biopsies from patients with early RA. Most importantly, our data show for the first time that daratumumab effectively depletes plasma cells/plasmablasts in PBMC from patients with SLE and RA in a dose-dependent manner ex vivo. Conclusion: These results indicate that CD38 may be a potential target for RA disease interception and daratumumab should be evaluated clinically for the treatment of both RA and SLE.