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Turnbull, C. M.

Publications and source records attributed to Turnbull, C. M..

2 recordsLinked to original sources

Selective alteration to CD4 T cell differentiation by heterozygous IRF4L116R protects against neuroinflammation

The decision of naive T cells to differentiate into a specific Th cell subset after antigen encounter is a critical pivot point of the immune response and, when out of balance, can lead to autoimmunity, allergy or immunodeficiency. Th subset differentiation is determined by the expression of transcription factors including IRF4. We here describe a point mutation (IRF4L116R) in the DNA-binding domain of IRF4 leading to a dysregulation of CD4-T cell subsets and their functions. This point mutation does not alter overall protein expression. In sharp contrast to IRF4-null mice, neither the CD4/CD8 ratio nor T cell activation and memory is altered in naive mice carrying the point mutation. However, IRF4L116R T cells are reduced in their capability to differentiate into Th1, Th17 and Treg cells in a dose-dependent manner, contrasting with the findings in IRF4KO T cells. Particularly striking is the loss of Th1-differentiation in T cells from homozygous Irf4L116R/L116R mice while T cells completely lacking IRF4 show no reduction in Th1 differentiation. Furthermore, despite maintained ability to generate Th17 cells, expression of the IRF4L116R variant protects mice against disease development in the Th17 cell-dependent EAE mouse model of neuroinflammation. This contrasts with IRF4 knock-out mice, where expression of one wild-type allele of IRF4 is sufficient for full disease development. Together our results show that the L116R point mutation in IRF4 can selectively alter the differentiation and function of some CD4 T cell subsets and suggest that the L116R mutation is not a classical loss- or gain-of-function variant.

immunology↗

Rare SH2B3 coding variants identified in lupus patients impair B cell tolerance and predispose to autoimmunity

Systemic lupus erythematosus (SLE) is a heterogeneous autoimmune disease, with a clear genetic component. While most SLE patients carry rare gene variants in lupus risk genes, little is known about their contribution to disease pathogenesis. Amongst them, SH2B3 - a negative regulator of cytokine and growth factor receptor signaling - harbors rare coding variants in over 5% of SLE patients. Here we show that unlike the variant found exclusively in healthy controls, most SH2B3 rare variants found in lupus patients are predominantly hypomorphic alleles. Generation of two mouse lines carrying variants orthologous to those found in patients revealed SH2B3 is important to limit the numbers of immature and transitional B cells. Furthermore, hypomorphic SH2B3 was shown to impair negative selection of immature/transitional self-reactive B cells and accelerate autoimmunity in sensitized mice, at least in part due to increased IL-4R signaling and BAFF-R expression. This work identifies a previously unappreciated role for SH2B3 in human B cell tolerance and lupus risk. SummaryZhang et al. reveal a role for hypomorphic SH2B3 in lupus risk. The study shows rare and damaging variants identified in lupus patients enable breach of B cell immune tolerance checkpoints and suggests involvement for dysregulated IL-4R signaling and BAFF-R expression.

immunology↗