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Functional heterogeneity of human tissue-resident memory T cells based on dye efflux capacities
Brahma V. Kumar, Radomir Kratchmarov, Michelle Miron, Dustin J. Carpenter, Takashi Senda, Harvey Lerner, Amy Friedman, Steven L. Reiner, Donna L. Farber
Brahma V. Kumar, Radomir Kratchmarov, Michelle Miron, Dustin J. Carpenter, Takashi Senda, Harvey Lerner, Amy Friedman, Steven L. Reiner, Donna L. Farber
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Research Article Immunology

Functional heterogeneity of human tissue-resident memory T cells based on dye efflux capacities

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Abstract

Tissue-resident memory T cells (TRMs) accelerate pathogen clearance through rapid and enhanced functional responses in situ. TRMs are prevalent in diverse anatomic sites throughout the human lifespan, yet their phenotypic and functional diversity has not been fully described. Here, we identify subpopulations of human TRMs based on the ability to efflux fluorescent dyes [efflux(+) TRMs] located within mucosal and lymphoid sites with distinct transcriptional profiles, turnover, and functional capacities. Compared with efflux(–) TRMs, efflux(+) TRMs showed transcriptional and phenotypic features of quiescence including reduced turnover, decreased expression of exhaustion markers, and increased proliferative capacity and signaling in response to homeostatic cytokines. Moreover, upon activation, efflux(+) TRMs secreted lower levels of inflammatory cytokines such as IFN-γ and IL-2 and underwent reduced degranulation. Interestingly, analysis of TRM subsets following activation revealed that both efflux(+) and efflux(–) TRMs undergo extensive transcriptional changes following TCR ligation but retain core TRM transcriptional properties including retention markers, suggesting that TRMs carry out effector function in situ. Overall, our results suggest a model for tissue-resident immunity wherein heterogeneous subsets have differential capacities for longevity and effector function.

Authors

Brahma V. Kumar, Radomir Kratchmarov, Michelle Miron, Dustin J. Carpenter, Takashi Senda, Harvey Lerner, Amy Friedman, Steven L. Reiner, Donna L. Farber

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Figure 1

A subset of memory CD8+ T cells across human tissues efflux fluorescent dyes.

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A subset of memory CD8+ T cells across human tissues efflux fluorescent ...
Human T cells from the indicated tissue sites were loaded with mitochondrial dyes and analyzed by flow cytometry. (A) MitoTracker fluorescence within memory (CD45RA–CCR7–) CD8+ T cells in tissues of a representative donor. Numbers within plots indicate percentage of cells that are Mitohi (right) or Mitolo (left). (B) Comparison of CMXRos (upper) and MitoTracker Green (lower) staining of memory CD8+ T cells from the spleen and lung of a representative donor. (C) Inhibition of dye efflux by cyclosporine A (CSA) and verapamil. CD8+ T cells from spleen were labeled with MitoTracker green as in panel A in the presence or absence of CSA (top row) or verapamil (bottom row) at the indicated concentrations. Results are representative of 3 different donors. (D) Fraction of memory CD8+ T cells that are efflux(+) from the indicated tissue sites. LN, lymph node. Bar graph shows mean + SEM with individual samples shown from 4–20 donors for each tissue. (E) A subset of CMV-specific CD8+ T cells across tissues efflux dyes. Upper: Detection of CMV-specific CD8+ T cells within memory CD8+ T cells from indicated tissue sites. Lower: Frequency of efflux(+) and efflux(–) cells within the CMV tetramer+ population. Results are representative of 2 donors.

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ISSN 2379-3708

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