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Coreceptor therapy has distinct short- and long-term tolerogenic effects intrinsic to autoreactive effector T cells
Matthew Clark, … , Bo Wang, Roland Tisch
Matthew Clark, … , Bo Wang, Roland Tisch
Published July 27, 2021
Citation Information: JCI Insight. 2021;6(17):e149130. https://doi.org/10.1172/jci.insight.149130.
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Research Article Immunology

Coreceptor therapy has distinct short- and long-term tolerogenic effects intrinsic to autoreactive effector T cells

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Abstract

Immunotherapies are needed in the clinic that effectively suppress β cell autoimmunity and reestablish long-term self-tolerance in type 1 diabetes. We previously demonstrated that nondepleting anti-CD4 (αCD4) and αCD8α antibodies establish rapid and indefinite remission in recent-onset diabetic NOD mice. Diabetes reversal by coreceptor therapy (CoRT) is induced by suppression of pathogenic effector T cells (Teffs) and the selective egress of T cells from the pancreatic lymph nodes and islets that remain free of infiltration in the long term. Here, we defined CoRT-induced events regulating early Teff function and pancreatic residency, and long-term tolerance. TCR-driven gene expression controlling autoreactive Teff expansion and proinflammatory activity was suppressed by CoRT, and islet T cell egress was dependent on sphingosine-1 phosphate. In both murine and human T cells, CoRT upregulated the Foxo1 transcriptional axis, which in turn was required for suppression and efficient pancreatic egress of Teffs. Interestingly, long-term tolerance induced in late-preclinical NOD mice was marked by reseeding of the pancreas by a reduced CD8+ Teff pool exhibiting an exhausted phenotype. Notably, PD-1 blockade, which rescues exhausted Teffs, resulted in diabetes onset in protected animals. These findings demonstrate that CoRT has distinct intrinsic effects on Teffs that impact events early in induction and later in maintenance of self-tolerance.

Authors

Matthew Clark, Charles J. Kroger, Qi Ke, Rui Zhang, Karen Statum, J. Justin Milner, Aaron Martin, Bo Wang, Roland Tisch

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Figure 9

ND αhuCD4/αhuCD8α Abs promote S1P-dependent human T cell egress during xGvHD.

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ND αhuCD4/αhuCD8α Abs promote S1P-dependent human T cell egress during x...
(A–C) NRG.PBL mice (n = 3–5 human donors; each symbol is the average for the cohort of a given donor) were treated with ND αhuCD4/αhuCD8α or control Ab. (A and B) mRNA measured in purified human (A) CD4+ and (B) CD8+ T cells (ΔΔCT calculated relative to control). (C) Pancreatic human CD4+ and CD8+ T cells examined by FACS. (D) NRG.PBL mice were pretreated with 1 mg/kg FTY720 for 24 hours, and then received 1 injection of ND αhuCD4 and αhuCD8α or control Ab, plus daily injections of FTY20 for 72 hours (n = 5 human donors; each symbol is the average for the cohort of a given donor). Pancreatic human CD4+ and CD8+ T cells were then enumerated by FACS. Error bars depict SD. *P < 0.05, **P < 0.01, determined by Student’s t test (A–C) or 2-way ANOVA (D). Data are pooled from 3–5 experiments.

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