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Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism.

Publication ,  Journal Article
Richard, EM; Thiyagarajan, T; Bunni, MA; Basher, F; Roddy, PO; Siskind, LJ; Nietert, PJ; Nowling, TK
Published in: PLoS One
2013

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.

Duke Scholars

Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2013

Volume

8

Issue

9

Start / End Page

e75175

Location

United States

Related Subject Headings

  • T-Lymphocytes
  • Receptors, Antigen, T-Cell
  • Proto-Oncogene Protein c-fli-1
  • Mice, Inbred MRL lpr
  • Mice
  • Lymphocyte Activation
  • Lupus Erythematosus, Systemic
  • Jurkat Cells
  • Interleukin-4
  • Humans
 

Citation

APA
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ICMJE
MLA
NLM
Richard, E. M., Thiyagarajan, T., Bunni, M. A., Basher, F., Roddy, P. O., Siskind, L. J., … Nowling, T. K. (2013). Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism. PLoS One, 8(9), e75175. https://doi.org/10.1371/journal.pone.0075175
Richard, Erin Morris, Thirumagal Thiyagarajan, Marlene A. Bunni, Fahmin Basher, Patrick O. Roddy, Leah J. Siskind, Paul J. Nietert, and Tamara K. Nowling. “Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism.PLoS One 8, no. 9 (2013): e75175. https://doi.org/10.1371/journal.pone.0075175.
Richard EM, Thiyagarajan T, Bunni MA, Basher F, Roddy PO, Siskind LJ, et al. Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism. PLoS One. 2013;8(9):e75175.
Richard, Erin Morris, et al. “Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism.PLoS One, vol. 8, no. 9, 2013, p. e75175. Pubmed, doi:10.1371/journal.pone.0075175.
Richard EM, Thiyagarajan T, Bunni MA, Basher F, Roddy PO, Siskind LJ, Nietert PJ, Nowling TK. Reducing FLI1 levels in the MRL/lpr lupus mouse model impacts T cell function by modulating glycosphingolipid metabolism. PLoS One. 2013;8(9):e75175.

Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2013

Volume

8

Issue

9

Start / End Page

e75175

Location

United States

Related Subject Headings

  • T-Lymphocytes
  • Receptors, Antigen, T-Cell
  • Proto-Oncogene Protein c-fli-1
  • Mice, Inbred MRL lpr
  • Mice
  • Lymphocyte Activation
  • Lupus Erythematosus, Systemic
  • Jurkat Cells
  • Interleukin-4
  • Humans