Differential Expression of Interleukin-17A and-17F Is Coupled to T Cell Receptor Signaling via Inducible T Cell Kinase
IMMUNITY
Authors: Gomez-Rodriguez, Julio; Sahu, Nisebita; Handon, Robin; Davidson, Todd S.; Anderson, Stacie M.; Kirby, Martha R.; August, Avery; Schwartzberg, Pamela L.
Abstract
T helper 17 (Th17) cells play major roles in autoimmunity and bacterial infections, yet how T cell receptor (TCR) signaling affects Th17 cell differentiation is relatively unknown. We demonstrate that CD4(+) T cells lacking ltk, a tyrosine kinase required for full TCR-induced phospholipase C-gamma (PLC-gamma 1) activation, exhibit decreased interleukin-17A (IL-17A) expression in vitro and in vivo, despite relatively normal expression of retinoic acid receptor-related orphan receptor-gamma T (ROR-gamma T) and IL-17F. IL-17A expression was rescued by pharmacologically induced Ca2+ influx or constitutively activated nuclear factor of activated T cells (NFAT). Conversely, decreased TCR stimulation or calcineurin inhibition preferentially reduced IL-17A expression. We further found that the promoter of Il17a but not Il17f has a conserved NFAT binding site that bound NFATc1 in wild-type but not ltk-deficient cells, even though both exhibited open chromatin conformations. Finally, ltk(-/-) mice also showed differential regulation of IL-17A and IL-17F in vivo. Our results suggest that ltk specifically couples TCR signaling to Il17a expression and the differential regulation of Th17 cell cytokines through NFATc1.
The IL17F and IL17RA Genetic Variants Increase Risk of Cerebral Malaria in Two African Populations
INFECTION AND IMMUNITY
Authors: Marquet, Sandrine; Conte, Ianina; Poudiougou, Belco; Argiro, Laurent; Cabantous, Sandrine; Dessein, Helia; Burte, Florence; Oumar, Aboubacar A.; Brown, Biobele J.; Traore, Abdoualye; Afolabi, Nathaniel K.; Barry, Abdoulaye; Omokhodion, Samuel; Ndoumbe, Ursule Ewanda; Shokunbi, Wuraola A.; Sodeinde, Olugbemiro; Doumbo, Ogobara; Fernandez-Reyes, Delmiro; Dessein, Alain J.
Abstract
Cerebral malaria (CM) is a neurological complication of infection with Plasmodium falciparum that is partly caused by cytokine-mediated inflammation. It is not known whether interleukin-17 (IL-17) cytokines, which regulate inflammation, control the development of CM. To evaluate the involvement of IL-17 cytokines in CM, we analyzed 46 common polymorphisms in IL17A, IL17F, and IL17RA (which encodes the common receptor chain of the members of the IL-17 family) in two independent African populations. A case-control study involving 115 Nigerian children with CM and 160 controls from the community (CC) showed that IL17F reference single nucleotide polymorphism (SNP) 6913472 (rs6913472) (P = 0.004; odds ratio [OR] = 3.12), IL17F rs4715291 (P = 0.004; OR = 2.82), IL17RA rs12159217 (P = 0.01; OR = 2.27), and IL17RA rs41396547 (P = 0.026; OR = 3.15) were independently associated with CM. A replication study was performed in 240 nuclear Malian family trios (two parents with one CM child). We replicated the association for 3 SNPs, IL17F rs6913472 (P = 0.03; OR = 1.39), IL17RA rs12159217 (P = 0.01; OR = 1.52), and IL17RA rs41396547 (P = 0.04; OR = 3.50). We also found that one additional SNP, IL17RA rs41433045, in linkage disequilibrium (LD) with rs41396547, was associated with CM in both Nigeria and Mali (P = 0.002; OR = 4.12 in the combined sample). We excluded the possibility that SNPs outside IL17F and IL17RA, in strong LD with the associated SNPs, could account for the observed associations. Furthermore, the results of a functional study indicated that the aggravating GA genotype of IL17F rs6913472 was associated with lower IL-17F concentrations. Our findings show for the first time that IL17F and IL17RA polymorphisms modulate susceptibility to CM and provide evidence that IL-17F protects against CM.