1. Tyrosine kinase 2 variant influences T lymphocyte polarization and multiple sclerosis susceptibility.
- Author
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Couturier N, Bucciarelli F, Nurtdinov RN, Debouverie M, Lebrun-Frenay C, Defer G, Moreau T, Confavreux C, Vukusic S, Cournu-Rebeix I, Goertsches RH, Zettl UK, Comabella M, Montalban X, Rieckmann P, Weber F, Müller-Myhsok B, Edan G, Fontaine B, Mars LT, Saoudi A, Oksenberg JR, Clanet M, Liblau RS, and Brassat D
- Subjects
- Adolescent, Adult, Case-Control Studies, Cell Proliferation, Cells, Cultured, Chi-Square Distribution, Cytokines metabolism, Female, Flow Cytometry, France epidemiology, GATA3 Transcription Factor genetics, GATA3 Transcription Factor metabolism, Gene Expression Regulation genetics, Genotype, Humans, Male, Models, Molecular, Signal Transduction drug effects, Signal Transduction genetics, T-Lymphocytes drug effects, Time Factors, Young Adult, Genetic Predisposition to Disease, Multiple Sclerosis genetics, Multiple Sclerosis pathology, Polymorphism, Single Nucleotide genetics, T-Lymphocytes physiology, TYK2 Kinase genetics
- Abstract
The tyrosine kinase 2 variant rs34536443 has been established as a genetic risk factor for multiple sclerosis in a variety of populations. However, the functional effect of this variant on disease pathogenesis remains unclear. This study replicated the genetic association of tyrosine kinase 2 with multiple sclerosis in a cohort of 1366 French patients and 1802 controls. Furthermore, we assessed the functional consequences of this polymorphism on human T lymphocytes by comparing the reactivity and cytokine profile of T lymphocytes isolated from individuals expressing the protective TYK2(GC) genotype with the disease-associated TYK2(GG) genotype. Our results demonstrate that the protective C allele infers decreased tyrosine kinase 2 activity, and this reduction of activity is associated with a shift in the cytokine profile favouring the secretion of Th2 cytokines. These findings suggest that the rs34536443 variant effect on multiple sclerosis susceptibility might be mediated by deviating T lymphocyte differentiation toward a Th2 phenotype. This impact of tyrosine kinase 2 on effector differentiation is likely to be of wider importance because other autoimmune diseases also have been associated with polymorphisms within tyrosine kinase 2. The modulation of tyrosine kinase 2 activity might therefore represent a new therapeutic approach for the treatment of autoimmune diseases.
- Published
- 2011
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