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SOUDJA, S. M.

Publications and source records attributed to SOUDJA, S. M..

2 recordsLinked to original sources

Memory CD8+ T cells mediate early pathogen-specific protection through localized delivery of chemokines and IFNγ to clusters of inflammatory monocytes

While cognate antigen drives clonal expansion of memory CD8+ T cells to achieve sterilizing immunity in immunized hosts, not much is known on how cognate antigen contributes to early mechanisms of protection before clonal expansion occurs. Herein, using distinct models of immunization, we establish that cognate antigen recognition by CD8+ TM cells on dendritic cells initiates their rapid and coordinated production of a burst of CCL3, CCL4 and XCL1 chemokines under the transcriptional control of IRF4. Using intravital microscopy imaging and in vivo monoclonal antibody labelling, we reveal that memory CD8+ T cells undergo antigen-mediated arrest in splenic red pulp clusters of CCR2+ monocytes where they locally deliver both IFN{gamma}- and chemokine-potentiating microbicidal activities to achieve early protection. Thus, rapid and effective memory CD8+ T cell responses require a complex series of spatially and temporally coordinated stepwise molecular and cellular events that quickly restrict microbial pathogen growth and optimize the local delivery of effector molecules before clonal expansion occurs.

immunology

SMAD4 governs a feedforward regulation of the TGF-beta effects in CD8 T cells that contributes to preventing chronic intestinal inflammation

SMAD4, a key mediator of TGF-{beta} signaling, plays a crucial role in T cells to prevent chronic gut inflammation. However, the molecular mechanisms underlying this control remain elusive. Using different genetic and epigenetic approaches, we unexpectedly reveal that SMAD4 in CD8 T cells prevents chronic intestinal inflammation by a feedforward mechanism that is TGF-{beta}-independent. Prior to any TGF-{beta}-receptor engagement, SMAD4 acts as an active and basal repressor of epigenetic, transcriptional and functional TGF-{beta} imprinting in CD8 T cells. Thus, in sharp opposition to total TGF-{beta} signaling deletion, SMAD4 deletion impairs naive CD8 T cell effector predisposition but promotes CD8 T cell accumulation and epithelial retention by promoting their response to IL-7 and their expression of integrins such as Itgae. Besides, SMAD4 deletion unleashes the induction of a wide range of TGF-{beta}-signaling-repressors such as Smad7, Ski, Skil, and Smurf2 and hampers TGF-{beta}-mediated CD8 T cell immunosuppression. Mechanistically, prior to any TGF-{beta} signal, SMAD4 binds to the loci of several TGF-{beta}-target genes, and by regulating histone acetylation, represses their expression. The massive gut epithelial colonization, associated with their escape from the immunoregulatory TGF-{beta} effects overtakes their poor effector preconditioning and elicits microbiota-driven chronic epithelial CD8 T cell activation. Hence, in an anticipatory manner, independently of TGF-{beta}, SMAD4 governs a feedforward regulation of TGF-{beta} effects in CD8 T cells, preventing chronic intestinal inflammation.

immunology