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Staal, M. D.

Publications and source records attributed to Staal, M. D..

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Stem-like PD-1+TCF-1+ CD8+ T cells result from helpless priming and rely on CD4+ T-cell help to complete their cytotoxic effector differentiation

BackgroundAntigen-specific CD8+ T cells can be in a stem-like PD-1+TCF-1+ differentiation state that progresses into terminal exhaustion in cancer and chronic infection. These stem-like cells are important, since they are the responders to PD-1 targeted immunotherapy. MethodsWe use mouse vaccination and tumor models to delineate the effects of CD4+ T-cell help during priming on the differentiation fate of stem-like CD8+ T cells. ResultsIn absence of help signals, stem-like CD8+ T cells do not differentiate into effector cytotoxic T cells (CTLs) and accumulate in the draining lymph node (dLN). When help signals are delivered, either during or after priming, stem-like CD8+ T cells proliferate and differentiate into circulating effector cells. Stem-like CD8+ T cells raised by vaccination in presence or absence of CD4+ T-cell help have an identical transcriptome, which they share with stem-like cells defined in mouse models of cancer and chronic infection. Regardless of expression of strong helper epitopes as present in our vaccine, the immunogenic MC38 tumor does not prime helped effector CD8+ T cells but primarily stem-like cells. ConclusionsOur data support the proposition that stem-like CD8+ T cells are helpless cells that lie at the bifurcation point of CD8+ T-cell effector- and exhaustion trajectories. Effective delivery of help signals to stem-like CD8+ T cells to drive their expansion and CTL effector differentiation is an important therapeutic challenge in cancer and other conditions that lead to T-cell exhaustion. SUMMARYO_ST_ABSWhat is already known on this topicC_ST_ABSPD-1+TCF-1+ stem-like CD8+ T cells are the progenitors of exhausted cells in cancer and chronic infection and the main responders to PD-(L)1-targeting cancer immunotherapy. Stem-like CD8+ T cells can differentiate towards functional effectors or exhausted cells, but the question remains which signals drive this fate decision during priming. What this study addsThis study shows that PD-1+TCF-1+ stem-like CD8+ T cells are cells that have not (yet) received CD4+ T-cell help signals during priming. In a vaccination setting, providing help signals to stem-like CD8+ T cells, even after priming, drives their differentiation towards functional CTLs. However, in a tumor context, CTL differentiation is impaired even when helper epitopes are present in the tumor and a prime a CD4+ T-cell response. How this study might affect research, practice or policyThis study elucidates the origin of stem-like CD8+ T cells, and identifies CD4+ T-cell help as critical factor to steer their differentiation in the direction of optimal CTLs. It also highlights that expression of immunogenic helper epitopes by tumor cells does not guarantee that CD4+ T-cell help for CTL differentiation is delivered. These findings expand the current CD8+ T-cell differentiation model and provide a rationale to optimize immunotherapeutic strategies.

immunology↗

Requirements for development of T-helper1 and T-follicular helper cells from a common precursor

Activated CD4 T cells become either T-helper (Th) or T-follicular helper (Tfh) cells that support cellular or humoral immunity. We have investigated how polyclonal, vaccine induced T cells in mice bifurcate into Th1- and Tfh trajectories. We show that Th1 and Tfh cells originate from the same, highly proliferative precursor clones that co-express Th1- and Tfh-related transcription factors and chemokine receptors, including T-bet, BCL6, CXCR3 and CXCR5. Generation of the common Th1/Tfh precursor pool from antigen-specific CD4 T cells relies on CD28 costimulation but occurs independently of type-1 conventional dendritic cells (cDC1s) or B cells. Differentiation of Th1/Tfh precursors into the Th1 lineage relies on CD40 costimulation and cDC1s, while differentiation into the Tfh lineage relies on ICOS costimulation and B cells. Thus, activated CD4 T cells give rise to a bipotent Th1/Tfh precursor and differentiation into Th1 or Tfh cells depends on interactions with antigen-presenting cDC1s or B cells.

immunology↗