bioRxiv · 10.1101/2022.04.03.486884
T cell-mediated development of stromal fibroblasts with an immune-enhancing chemokine profile
Abstract
Stromal fibroblasts reside in inflammatory tissues that are characterized by either immune suppression or immune activation, but whether these cells adapt to these contrasting microenvironments is not known. Cancer-associated fibroblasts (CAFs) mediate immune quiescence by producing the chemokine CXCL12 that coats cancer cells to suppress T cell infiltration. We examined whether CAFs can adopt an immune-promoting chemokine profile. Single-cell RNA-sequencing of CAFs from mouse pancreatic adenocarcinomas identified a sub-population with decreased expression of CXCL12 and increased expression of the T cell-attracting chemokine, CXCL9, that was expanded when tumors were infiltrated with T cells. Conditioned media from activated CD8+ T cells containing TNF and IFN{gamma} converted the chemokine profile of stromal fibroblasts from a CXCL12+/CXCL9- immune suppressive phenotype into a CXCL12-/CXCL9+ immune-activating phenotype. Studies with recombinant cytokines showed that TNF acted synergistically with IFN{gamma} to induce CXCL9 expression, and alone was mainly responsible for suppressing CXCL12 expression. This coordinated chemokine switch demonstrates that stromal fibroblasts have a phenotypic plasticity that allow their adaptation to contrasting immune tissue microenvironments. SummaryIt is unclear whether and how stromal fibroblasts adapt and contribute to varying tissue microenvironments. This study shows immune-suppressive cancer-associated fibroblasts (CAFs) have the capacity to develop an immune-promoting chemokine profile in response to cytokines from infiltrating T cells.
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Yan, R., Fearon, D. T.. 2022-04-05. T cell-mediated development of stromal fibroblasts with an immune-enhancing chemokine profile. https://doi.org/10.1101/2022.04.03.486884
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