Sustained Activation of Lyn Tyrosine Kinase In Vivo Leads to Autoimmunity

Author:

Hibbs Margaret L.1,Harder Kenneth W.1,Armes Jane2,Kountouri Nicole1,Quilici Cathy1,Casagranda Franca1,Dunn Ashley R.1,Tarlinton David M.3

Affiliation:

1. Ludwig Institute for Cancer Research, Melbourne Tumour Biology Branch

2. Melbourne Pathology, Royal Women's Hospital, Victoria 3053, Australia and Victorian Breast Cancer Research Consortium, Department of Pathology, University of Melbourne, Victoria 3052, Australia

3. Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria 3050, Australia

Abstract

Genetic ablation of the Lyn tyrosine kinase has revealed unique inhibitory roles in B lymphocyte signaling. We now report the consequences of sustained activation of Lyn in vivo using a targeted gain-of-function mutation (Lynup/up mice). Lynup/up mice have reduced numbers of conventional B lymphocytes, down-regulated surface immunoglobulin M and costimulatory molecules, and elevated numbers of B1a B cells. Lynup/up B cells are characterized by the constitutive phosphorylation of negative regulators of B cell antigen receptor (BCR) signaling including CD22, SHP-1, and SHIP-1, and display attributes of lymphocytes rendered tolerant by constitutive engagement of the antigen receptor. However, exaggerated positive signaling is also apparent as evidenced by the constitutive phosphorylation of Syk and phospholipase Cγ2 in resting Lynup/up B cells. Similarly, Lynup/up B cells show a heightened calcium flux in response to BCR stimulation. Surprisingly, Lynup/up mice develop circulating autoreactive antibodies and lethal autoimmune glomerulonephritis, suggesting that enhanced positive signaling eventually overrides constitutive negative signaling. These studies highlight the difficulty in maintaining tolerance in the face of chronic stimulation and emphasize the pivotal role of Lyn in B cell signaling.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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