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Single-cell transcriptomics of alloreactive CD4+ T cells over time reveals divergent fates during gut graft-versus-host disease
Jessica A. Engel, Hyun Jae Lee, Cameron G. Williams, Rachel Kuns, Stuart Olver, Lianne I.M. Lansink, Megan S.F. Soon, Stacey B. Andersen, Joseph E. Powell, Valentine Svensson, Sarah A. Teichmann, Geoffrey R. Hill, Antiopi Varelias, Motoko Koyama, Ashraful Haque
Jessica A. Engel, Hyun Jae Lee, Cameron G. Williams, Rachel Kuns, Stuart Olver, Lianne I.M. Lansink, Megan S.F. Soon, Stacey B. Andersen, Joseph E. Powell, Valentine Svensson, Sarah A. Teichmann, Geoffrey R. Hill, Antiopi Varelias, Motoko Koyama, Ashraful Haque
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Research Article Hematology Immunology

Single-cell transcriptomics of alloreactive CD4+ T cells over time reveals divergent fates during gut graft-versus-host disease

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Abstract

Acute gastrointestinal (GI) graft-versus-host disease (GVHD) is a primary determinant of mortality after allogeneic hematopoietic stem cell transplantation (alloSCT). The condition is mediated by alloreactive donor CD4+ T cells that differentiate into pathogenic subsets expressing IFN-γ, IL-17A, or GM-CSF and is regulated by subsets expressing IL-10 and/or Foxp3. Developmental relationships between Th cell states during priming in mesenteric lymph nodes (mLNs) and effector function in the GI tract remain undefined at genome scale. We applied scRNA-Seq and computational modeling to a mouse model of donor DC-mediated GVHD exacerbation, creating an atlas of putative CD4+ T cell differentiation pathways in vivo. Computational trajectory inference suggested emergence of pathogenic and regulatory states along a single developmental trajectory in mLNs. Importantly, we inferred an unexpected second trajectory, categorized by little proliferation or cytokine expression, reduced glycolysis, and high tcf7 expression. TCF1hi cells upregulated α4β7 before gut migration and failed to express cytokines. These cells exhibited recall potential and plasticity following secondary transplantation, including cytokine or Foxp3 expression, but reduced T cell factor 1 (TCF1). Thus, scRNA-Seq suggested divergence of alloreactive CD4+ T cells into quiescent and effector states during gut GVHD exacerbation by donor DC, reflecting putative heterogeneous priming in vivo. These findings, which are potentially the first at a single-cell level during GVHD over time, may assist in examination of T cell differentiation in patients undergoing alloSCT.

Authors

Jessica A. Engel, Hyun Jae Lee, Cameron G. Williams, Rachel Kuns, Stuart Olver, Lianne I.M. Lansink, Megan S.F. Soon, Stacey B. Andersen, Joseph E. Powell, Valentine Svensson, Sarah A. Teichmann, Geoffrey R. Hill, Antiopi Varelias, Motoko Koyama, Ashraful Haque

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Figure 2

Droplet-based scRNA-Seq and computational modeling of TEa T cells over time suggests diverging fates in mLN.

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Droplet-based scRNA-Seq and computational modeling of TEa T cells over t...
(A) Schematic of scRNA-Seq experiment used to study donor CD4+ T cell differentiation. TEa cells were recovered from the mLN at various time points and cells pooled from multiple mice (n = number of mice pooled; at day 4, samples from 3 mice ran separately) for droplet-based scRNA-Seq using the 10x Chromium. (B) bGPLVM visualization of TEa cells from days 1 to 4 overlaid with the developmental trajectories identified by Slingshot (trajectory I, II, and III). (C) Visualization of Cd69, Mki67, and Itgb7 expression, or the cell cycle, aerobic glycolysis, and oxidative phosphorylation gene signature scores, in bGPLVM overlaid with trajectories. (D) Violin plots showing expression of genes or gene signature scores as described in (C) for each trajectory. Statistical analysis was performed using a Wilcoxon-rank sum test between trajectories. ****P ≤ 0.0001. bGPLVM, Bayesian Gaussian process latent variable model; mLN, mesenteric lymph node.

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