Journal of Clinical Investigation · 2002 · 207 citations · 31 references
Clinical ImmunologySsc PatientsImmune RegulationImmunologyImmunologic MechanismInnate ImmunityDermatologyImmune SystemCd19 DeficiencyImmune DysregulationInflammationAutoantibodiesExperimental DermatologyCell SignalingAutoimmune DiseaseAllergyCutaneous BiologyCd19-dependent B LymphocyteImmune SurveillanceAutoimmunityHumoral ImmunityT Cell ImmunityImmune FunctionSelf-toleranceImmunologic DiseaseCell BiologyCd19 ExpressionAutoantibody ProductionImmune Cell DevelopmentTight-skin MouseMedicine
The tight-skin (TSK/+) mouse, a genetic model for human systemic sclerosis (SSc), develops cutaneous fibrosis and autoantibodies against SSc-specific target autoantigens. Although molecular mechanisms explaining the development of fibrosis and autoimmunity in SSc patients or TSK/+ mice remain unknown, we recently demonstrated that SSc patients overexpress CD19, an important regulatory molecule expressed by B lymphocytes. B cells from CD19-deficient mice are hyporesponsive to transmembrane signals, while B cells overexpressing CD19 are hyperresponsive and generate autoantibodies. In this study, TSK/+ B cells also exhibited a hyperresponsive phenotype with decreased surface IgM expression, enhanced serum Ig production, and spontaneous autoantibody production. Moreover, CD19 tyrosine phosphorylation was constitutively augmented in TSK/+ B cells. CD19-mediated [Ca2+]i responses, Vav phosphorylation, and Lyn kinase activity were similarly enhanced. Studies of TSK/+ mice deficient in CD19 expression demonstrated that CD19 deficiency significantly decreased skin fibrosis in TSK/+ mice. Additionally, CD19 loss in TSK/+ mice upregulated surface IgM expression and completely abrogated hyper-γ-globulinemia and autoantibody production. CD19 deficiency also inhibited IL-6 production by TSK/+ B cells. Thus, chronic B cell activation resulting from augmented CD19 signaling in TSK/+ mice leads to skin sclerosis possibly through IL-6 overproduction as well as autoimmunity.
31
From Systemic T Cell Self-Reactivity to Organ-Specific Autoimmune Disease via Immunoglobulins
Anne‐Sophie Korganow, Hong Ji, Sara Mangialaio et al. · Immunity · 1999 · 676 citations · Full text
Pablo Engel, Liang‐Ji Zhou, David C. Ord et al. · Immunity · 1995 · 544 citations · Full text
Autoimmune Disease, Lymphocyte Development, Immune Cell Development +9
Shinichi Sato, Ann S. Miller, Makoto Inaoki et al. · Immunity · 1996 · 427 citations · Full text
Negative Regulator, Altered Signaling, Lymphocyte Development +10