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Suarez-Ramirez, J.

Publications and source records attributed to Suarez-Ramirez, J..

2 recordsLinked to original sources

SMAD4 promotes formation of terminally differentiated CTLs that localize in the microvasculature of the lungs but are excluded from the lumen of the airways

Cytotoxic T lymphocytes (CTLs) circulate around the body searching for infected and transformed cells, that undergo apoptosis when lytic granules are delivered into the cytoplasm. To find pathogens that propagate in different tissues, naive CD8 T cells differentiate into heterogeneous populations of effector (TEFF) and memory CD8 T cells with different migratory properties. Several subsets can be identified using antibodies that recognize surface receptors that are expressed at specific stages during CD8 T cell differentiation. Although flow cytometry is a powerful method for tracking antigen specific CTLs during a dynamic immune response, the data provide little information about the distribution of cells in specific anatomical compartments. In this study, confocal imaging was used to explore how signaling via SMAD4 influenced the tissue-tropism of antigen specific CTLs during respiratory infection. During microbial infection, wildtype CTLs gave rise to terminally differentiated TEFF cells that expressed KLRG1 and CX3CR1 at high levels and localized in the microvasculature of the lungs. However, both markers were expressed at reduced levels on SMAD4-deficient CTLs, which preferentially entered the lumen of the airways. These disparate homing properties emphasize the important contributions of SMAD signaling pathways to cell-mediated immunity.

immunology↗

SMAD4 and TGFβ are architects of inverse genetic programs during fate-determination of antiviral memory CD8 T cells

Transforming growth factor {beta} (TGF{beta}) is a morphogenic protein that augments antiviral immunity by altering the functional properties of pathogen-specific memory CD8 T cells. During infection TGF{beta} inhibits formation of effector (TEFF) and central memory CD8 T cells (TCM), while encouraging tissue-resident memory CD8 T cells (TRM) to settle in peripheral tissues. SMAD proteins are signaling intermediates that are used by members of the TGF cytokine family to modify gene expression. For this study, RNA-sequencing was used to explore how regulation via SMAD4 alters the transcriptional profile of antiviral CTLs during infection. We show that SMAD4 and TGF{beta} cooperatively regulate a collection of genes that determine whether specialized populations of pathogen-specific CTLs circulate around the body, or settle in peripheral tissue. The target genes include multiple homing receptors (CD103, KLRG1 and CD62L) and transcription factors (Hobit and EOMES) that support memory formation. While TGF{beta} uses a canonical SMAD-dependent signaling pathway to induce CD103 expression on TRM cells, an alternative SMAD4-dependent mechanism is required for formation of TEFF and TCM cells in the circulation. Graphical abstractTGF{beta} and SMAD4 modulate gene expression in reciprocal directions during differentiation of antiviral CTLs. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=132 SRC="FIGDIR/small/472993v2_ufig1.gif" ALT="Figure 1"> View larger version (36K): org.highwire.dtl.DTLVardef@5ac140org.highwire.dtl.DTLVardef@455a2aorg.highwire.dtl.DTLVardef@1227d96org.highwire.dtl.DTLVardef@16336b9_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗