Effector and stem-like memory cell fates are imprinted in distinct lymph node niches directed by CXCR3 ligands

BC Duckworth, F Lafouresse, VC Wimmer… - Nature …, 2021 - nature.com
BC Duckworth, F Lafouresse, VC Wimmer, BJ Broomfield, L Dalit, YO Alexandre, AA Sheikh…
Nature immunology, 2021nature.com
T cells dynamically interact with multiple, distinct cellular subsets to determine effector and
memory differentiation. Here, we developed a platform to quantify cell location in three
dimensions to determine the spatial requirements that direct T cell fate. After viral infection,
we demonstrated that CD8+ effector T cell differentiation is associated with positioning at the
lymph node periphery. This was instructed by CXCR3 signaling since, in its absence, T cells
are confined to the lymph node center and alternatively differentiate into stem-like memory …
Abstract
T cells dynamically interact with multiple, distinct cellular subsets to determine effector and memory differentiation. Here, we developed a platform to quantify cell location in three dimensions to determine the spatial requirements that direct T cell fate. After viral infection, we demonstrated that CD8+ effector T cell differentiation is associated with positioning at the lymph node periphery. This was instructed by CXCR3 signaling since, in its absence, T cells are confined to the lymph node center and alternatively differentiate into stem-like memory cell precursors. By mapping the cellular sources of CXCR3 ligands, we demonstrated that CXCL9 and CXCL10 are expressed by spatially distinct dendritic and stromal cell subsets. Unlike effector cells, retention of stem-like memory precursors in the paracortex is associated with CCR7 expression. Finally, we demonstrated that T cell location can be tuned, through deficiency in CXCL10 or type I interferon signaling, to promote effector or stem-like memory fates.
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