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Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism

Systemic Lupus erythematosus (SLE) is an autoimmune disease caused, in part, by abnormalities in cells of the immune system including B and T cells. Genetically reducing globally the expression of the ETS transcription factor FLI1 by 50% in two lupus mouse models significantly improves disease measu...

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Autores principales: Richard, Erin Morris, Thiyagarajan, Thirumagal, Bunni, Marlene A., Basher, Fahmin, Roddy, Patrick O., Siskind, Leah J., Nietert, Paul J., Nowling, Tamara K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3769295/
https://www.ncbi.nlm.nih.gov/pubmed/24040398
http://dx.doi.org/10.1371/journal.pone.0075175
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author Richard, Erin Morris
Thiyagarajan, Thirumagal
Bunni, Marlene A.
Basher, Fahmin
Roddy, Patrick O.
Siskind, Leah J.
Nietert, Paul J.
Nowling, Tamara K.
author_facet Richard, Erin Morris
Thiyagarajan, Thirumagal
Bunni, Marlene A.
Basher, Fahmin
Roddy, Patrick O.
Siskind, Leah J.
Nietert, Paul J.
Nowling, Tamara K.
author_sort Richard, Erin Morris
collection PubMed
description Systemic Lupus erythematosus (SLE) is an autoimmune disease caused, in part, by abnormalities in cells of the immune system including B and T cells. Genetically reducing globally the expression of the ETS transcription factor FLI1 by 50% in two lupus mouse models significantly improves disease measures and survival through an unknown mechanism. In this study we analyze the effects of reducing FLI1 in the MRL/lpr lupus prone model on T cell function. We demonstrate that adoptive transfer of MRL/lpr Fli1 (+/+) or Fli1 (+/-) T cells and B cells into Rag1-deficient mice results in significantly decreased serum immunoglobulin levels in animals receiving Fli1 (+/-) lupus T cells compared to animals receiving Fli1 (+/+) lupus T cells regardless of the genotype of co-transferred lupus B cells. Ex vivo analyses of MRL/lpr T cells demonstrated that Fli1 (+/-) T cells produce significantly less IL-4 during early and late disease and exhibited significantly decreased TCR-specific activation during early disease compared to Fli1 (+/+) T cells. Moreover, the Fli1 (+/-) T cells expressed significantly less neuraminidase 1 (Neu1) message and decreased NEU activity during early disease and significantly decreased levels of glycosphingolipids during late disease compared to Fli1 (+/+) T cells. FLI1 dose-dependently activated the Neu1 promoter in mouse and human T cell lines. Together, our results suggest reducing FLI1 in lupus decreases the pathogenicity of T cells by decreasing TCR-specific activation and IL-4 production in part through the modulation of glycosphingolipid metabolism. Reducing the expression of FLI1 or targeting the glycosphingolipid metabolic pathway in lupus may serve as a therapeutic approach to treating lupus.
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spelling pubmed-37692952013-09-13 Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism Richard, Erin Morris Thiyagarajan, Thirumagal Bunni, Marlene A. Basher, Fahmin Roddy, Patrick O. Siskind, Leah J. Nietert, Paul J. Nowling, Tamara K. PLoS One Research Article Systemic Lupus erythematosus (SLE) is an autoimmune disease caused, in part, by abnormalities in cells of the immune system including B and T cells. Genetically reducing globally the expression of the ETS transcription factor FLI1 by 50% in two lupus mouse models significantly improves disease measures and survival through an unknown mechanism. In this study we analyze the effects of reducing FLI1 in the MRL/lpr lupus prone model on T cell function. We demonstrate that adoptive transfer of MRL/lpr Fli1 (+/+) or Fli1 (+/-) T cells and B cells into Rag1-deficient mice results in significantly decreased serum immunoglobulin levels in animals receiving Fli1 (+/-) lupus T cells compared to animals receiving Fli1 (+/+) lupus T cells regardless of the genotype of co-transferred lupus B cells. Ex vivo analyses of MRL/lpr T cells demonstrated that Fli1 (+/-) T cells produce significantly less IL-4 during early and late disease and exhibited significantly decreased TCR-specific activation during early disease compared to Fli1 (+/+) T cells. Moreover, the Fli1 (+/-) T cells expressed significantly less neuraminidase 1 (Neu1) message and decreased NEU activity during early disease and significantly decreased levels of glycosphingolipids during late disease compared to Fli1 (+/+) T cells. FLI1 dose-dependently activated the Neu1 promoter in mouse and human T cell lines. Together, our results suggest reducing FLI1 in lupus decreases the pathogenicity of T cells by decreasing TCR-specific activation and IL-4 production in part through the modulation of glycosphingolipid metabolism. Reducing the expression of FLI1 or targeting the glycosphingolipid metabolic pathway in lupus may serve as a therapeutic approach to treating lupus. Public Library of Science 2013-09-10 /pmc/articles/PMC3769295/ /pubmed/24040398 http://dx.doi.org/10.1371/journal.pone.0075175 Text en © 2013 Richard et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Richard, Erin Morris
Thiyagarajan, Thirumagal
Bunni, Marlene A.
Basher, Fahmin
Roddy, Patrick O.
Siskind, Leah J.
Nietert, Paul J.
Nowling, Tamara K.
Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title_full Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title_fullStr Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title_full_unstemmed Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title_short Reducing FLI1 Levels in the MRL/lpr Lupus Mouse Model Impacts T Cell Function by Modulating Glycosphingolipid Metabolism
title_sort reducing fli1 levels in the mrl/lpr lupus mouse model impacts t cell function by modulating glycosphingolipid metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3769295/
https://www.ncbi.nlm.nih.gov/pubmed/24040398
http://dx.doi.org/10.1371/journal.pone.0075175
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