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Defective BTLA functionality is rescued by restoring lipid metabolism in lupus CD4+ T cells
Matthieu Sawaf, Jean-Daniel Fauny, Renaud Felten, Flora Sagez, Jacques-Eric Gottenberg, Hélène Dumortier, Fanny Monneaux
Matthieu Sawaf, Jean-Daniel Fauny, Renaud Felten, Flora Sagez, Jacques-Eric Gottenberg, Hélène Dumortier, Fanny Monneaux
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Research Article Immunology

Defective BTLA functionality is rescued by restoring lipid metabolism in lupus CD4+ T cells

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Abstract

Coinhibitory receptors play an important role in the prevention of autoimmune diseases, such as systemic lupus erythematosus (SLE), by limiting T cell activation. B and T lymphocyte attenuator (BTLA) is an inhibitory receptor, similar to cytotoxic T lymphocyte–associated protein 4 (CTLA-4) and programmed death 1 (PD1), that negatively regulates the immune response. The role of BTLA in the pathogenesis of autoimmune diseases in humans and, more specifically, in SLE is largely unknown. We investigated BTLA expression on various T cell subsets, and we did not observe significant variations of BTLA expression between lupus patients and healthy controls. However, the enhancement of BTLA expression after activation was significantly lower in SLE patients compared with that in healthy controls. Furthermore, we found an impaired capacity of BTLA to inhibit T cell activation in SLE due to a poor BTLA recruitment to the immunological synapse following T cell stimulation. Finally, we demonstrated that defective BTLA function can be corrected by restoring intracellular trafficking and by normalizing the lipid metabolism in lupus CD4+ T cells. Collectively, our results evidence that the BTLA signaling pathway is altered in SLE T cells and highlight the potential of targeting this pathway for the development of new therapeutic strategies in lupus.

Authors

Matthieu Sawaf, Jean-Daniel Fauny, Renaud Felten, Flora Sagez, Jacques-Eric Gottenberg, Hélène Dumortier, Fanny Monneaux

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Figure 3

BTLA functionality is defective in SLE patients compared with that in HCs.

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BTLA functionality is defective in SLE patients compared with that in HC...
(A and B) CD4+ T cells were stimulated with anti-CD3/anti-CD28 mAbs with or without the agonistic anti-BTLA mAb or its isotype control. (A) CD4+ T cells were cultured for 3 days, and [3H] thymidine was added during the last 16–18 hours of culture. The percentage of inhibition of the proliferation was calculated as follows: (1 – [cpm in the presence of BTLA/cpm in the presence of isotype control]) × 100 for HCs (white dots and bar, n = 15) and SLE patients (black dots and hatched bar, n = 23). (B) CD25 expression on CD4+ T cells was analyzed after 2 days by flow cytometry, and the percentage of inhibition of CD25 expression was calculated for HCs (n = 9) and SLE patients (n = 17). (C) CD4+ T cells from HCs (n = 8) and SLE patients (n = 8) were stimulated for 5 minutes with an anti-CD3 mAb in the presence or not of the agonistic anti-BTLA mAb. Erk phosphorylation was determined intracellularly by flow cytometry, and the percentage of inhibition of Erk phosphorylation was calculated. (D) Correlation between BTLA fold enhancement and the percentage of inhibition of the proliferation (n = 26). Results are expressed as raw data (A–C; left) and as mean of inhibition ± SEM (A–C; right) and each dot represents one individual. *P < 0.05; **P < 0.01, Mann-Whitney; r, Spearman correlation coefficient.

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