Literature DB >> 11526096

Murine models of systemic lupus erythematosus: B and T cell responses to spliceosomal ribonucleoproteins in MRL/Fas(lpr) and (NZB x NZW)F(1) lupus mice.

F Monneaux1, H Dumortier, G Steiner, J P Briand, S Muller.   

Abstract

(NZB x NZW)F(1) and MRL/Fas(lpr) lupus mice present a similar phenotype with a spectrum of autoantibodies associated with very severe nephritis. It is thought, however, that in contrast to other lupus-prone mice such as MRL/Fas(lpr) mice, (NZB x NZW)F(1) mice do not generate autoantibodies to ribonucleoproteins (RNP) Sm/RNP. In this study, we demonstrate that contrary to previous reports, the autoimmune response directed against Sm/RNP antigens also occurs in NZB x NZW mice. CD4(+) T cells from unprimed 10-week-old NZB x NZW mice proliferate and secrete IL-2 in response to peptide 131-151 of the U1-70K protein, which is known to contain a T(h) epitope recognized by CD4(+) T cells from MRL/Fas(lpr) mice. Peptide 131-151, which was found to bind I-A(k) and I-E(k) class II MHC molecules, also bound both I-A(d) and I-E(d) molecules. This result led us to also re-evaluate longitudinally the anti-Sm/RNP antibody response in NZB x NZW mice. We found that 25-week-old mice do produce antibodies reacting with several small nuclear and heterogeneous nuclear (hn) RNP proteins, such as SmD1, U1-70K and hnRNP A2/B1 proteins. The fine specificity of these antibodies was studied with overlapping synthetic peptides. The same antigenically positive and negative peptides were characterized in MRL/Fas(lpr) and NZB x NZW mice in the three proteins. This new finding can help to understand the mechanisms involved in the development of the anti-Sm/RNP antibody response and, particularly, the role played by non-MHC genes in this autoimmune response.

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Year:  2001        PMID: 11526096     DOI: 10.1093/intimm/13.9.1155

Source DB:  PubMed          Journal:  Int Immunol        ISSN: 0953-8178            Impact factor:   4.823


  15 in total

1.  Effects of adjuvants for human use in systemic lupus erythematosus (SLE)-prone (New Zealand black/New Zealand white) F1 mice.

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2.  Angiotensin II type 1 receptor antibodies and increased angiotensin II sensitivity in pregnant rats.

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Review 3.  The U1-snRNP complex: structural properties relating to autoimmune pathogenesis in rheumatic diseases.

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Journal:  Immunol Rev       Date:  2010-01       Impact factor: 12.988

4.  Tetramers reveal IL-17-secreting CD4+ T cells that are specific for U1-70 in lupus and mixed connective tissue disease.

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Review 5.  Glomerular antibodies in lupus nephritis.

Authors:  Catherine Hanrotel-Saliou; Isabelle Segalen; Yannick Le Meur; Pierre Youinou; Yves Renaudineau
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6.  The role of microparticles in the generation of immune complexes in murine lupus.

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7.  Plasma Cell Depletion Attenuates Hypertension in an Experimental Model of Autoimmune Disease.

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Journal:  Hypertension       Date:  2018-01-29       Impact factor: 10.190

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9.  Influenza virus-induced type I interferon leads to polyclonal B-cell activation but does not break down B-cell tolerance.

Authors:  Anne Woods; Fanny Monneaux; Pauline Soulas-Sprauel; Sylviane Muller; Thierry Martin; Anne-Sophie Korganow; Jean-Louis Pasquali
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10.  Role of microRNA-15a in autoantibody production in interferon-augmented murine model of lupus.

Authors:  Yao Yuan; Siddha Kasar; Chingiz Underbayev; Daniel Vollenweider; Erica Salerno; Sergei V Kotenko; Elizabeth Raveche
Journal:  Mol Immunol       Date:  2012-05-11       Impact factor: 4.407

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