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Guidos, C. J.

Publications and source records attributed to Guidos, C. J..

2 recordsLinked to original sources

Interlinked roles for HEB and Id3 in fetal gamma-delta T cell commitment and functional programming

T cells expressing the {gamma}{delta} T cell receptor (TCR) develop in a stepwise process initiating at the {beta}/{gamma}{delta} T cell branchpoint followed by maturation and acquisition of effector functions, including the ability to produce interleukin-17 (IL-17) as {gamma}{delta}T17 cells. Previous studies linked TCR signal strength and fate choices to the transcriptional regulator HEB (Tcf12) and its antagonist, Id3, but how these factors regulate different stages of {gamma}{delta} T cell development has not been determined. We found that immature fetal {gamma}{delta}TCR+ cells from conditional Tcf12 knockout (HEB cKO) mice were defective in activating the {gamma}{delta}T17 program at an early stage, whereas Id3 deficient (Id3-KO) mice displayed a partial block in {gamma}{delta}T17 maturation and a defect in IL-17 production. We also found that HEB cKO mice failed to upregulate Id3 during {gamma}{delta}T17 development, whereas HEB overexpression elevated the levels of Id3 in collaboration with TCR signaling. Moreover, Egr2 and HEB were bound to several of the same regulatory sites on the Id3 gene locus in the context of early T cell development. Therefore, our findings reveal an interlinked sequence of events during which HEB and TCR signaling synergize to upregulate Id3, which enables maturation and acquisition of the {gamma}{delta}T17 effector program. One Sentence SummaryThe transcription factor HEB synergizes with TCR signaling to upregulate Id3, which is required for the maturation of fetal IL-17-producing {gamma}{delta} T cells.

immunology↗

Activated Notch1 Redirects CD4-Fated CD4+ CD8+ Precursors to the CD8 Lineage During Thymocyte Selection Without Causing T Cell Leukemia

Positive selection of CD4/CD8 double-positive (DP) thymocytes generates helper and cytotoxic T lineages whose CD4 or CD8 co-receptor expression matches their {beta} T cell receptor (TCR{beta}) specificity MHCII or MHCI, respectively. Notch1 signaling is critical for early T cell development and was suggested to regulate CD4/CD8 lineage determination during DP thymocyte selection. However, early studies expressing activated Notch1 in pre-DP progenitors did not resolve this question. Here we showed that CD4-Cre-mediated activation of canonical Rbpj-dependent Notch1 signalling potently skews DP selection to the CD8 lineage. We used a tamoxifen-inducible "time-stamp" model coupled with phenotypic staging to show that that activated Notch1 decreases generation of Gata3+ CD4+CD8lo selection intermediates during the earliest stages of DP selection, thereby preventing ThPOK induction and emergence of CD4 lineage cells. Finally, activated Notch1 efficiently re-directed DP thymocytes expressing MHCII-specific TCR{beta} into the CD8 lineage. These studies show that activated Notch1 acts early during DP selection to skew selection of CD4-fated, MHCII-specific DP precursors to the CD8 lineage.

immunology↗