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Single-cell characterization of leukemic and non-leukemic immune repertoires in CD8+ T-cell large granular lymphocytic leukemia

Ishida Fumihiro; Braun Till; Salmi Marko; Kerr Cassandra; Kelkka Tiina; Zambello Renato; Lönnberg Tapio; Rajala Hanna; Theodoropoulos Jason; Gurnari Carmelo; Herling Marco; Mustjoki Satu; Kawakami Toru; Huuhtanen Jani; Kankainen Matti; Bhattacharya Dipabarna; Teramo Antonella; Lähdesmäki Harri; Loughran Thomas; Kasanen Tiina; Maciejewski Jaroslaw P.

Single-cell characterization of leukemic and non-leukemic immune repertoires in CD8+ T-cell large granular lymphocytic leukemia

Ishida Fumihiro
Braun Till
Salmi Marko
Kerr Cassandra
Kelkka Tiina
Zambello Renato
Lönnberg Tapio
Rajala Hanna
Theodoropoulos Jason
Gurnari Carmelo
Herling Marco
Mustjoki Satu
Kawakami Toru
Huuhtanen Jani
Kankainen Matti
Bhattacharya Dipabarna
Teramo Antonella
Lähdesmäki Harri
Loughran Thomas
Kasanen Tiina
Maciejewski Jaroslaw P.
Katso/Avaa
Lönnberg_etAl2022_Article_Single-CellCharacterization.pdf (5.895Mb)
Lataukset: 

NATURE PORTFOLIO
doi:10.1038/s41467-022-29173-z
URI
https://www.nature.com/articles/s41467-022-29173-z
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022081154323
Tiivistelmä

T cell large granular lymphocytic leukemia (T-LGLL) is a rare lymphoproliferative disorder of mature, clonally expanded T cells, where somatic-activating STAT3 mutations are common. Although T-LGLL has been described as a chronic T cell response to an antigen, the function of the non-leukemic immune system in this response is largely uncharacterized. Here, by utilizing single-cell RNA and T cell receptor profiling (scRNA+TCRαβ-seq), we show that irrespective of STAT3 mutation status, T-LGLL clonotypes are more cytotoxic and exhausted than healthy reactive clonotypes. In addition, T-LGLL clonotypes show more active cell communication than reactive clones with non-leukemic immune cells via costimulatory cell-cell interactions, monocyte-secreted proinflammatory cytokines, and T-LGLL-clone-secreted IFN gamma. Besides the leukemic repertoire, the non-leukemic T cell repertoire in T-LGLL is also more mature, cytotoxic, and clonally restricted than in other cancers and autoimmune disorders. Finally, 72% of the leukemic T-LGLL clonotypes share T cell receptor similarities with their non-leukemic repertoire, linking the leukemic and non-leukemic repertoires together via possible common target antigens. Our results provide a rationale to prioritize therapies that target the entire immune repertoire and not only the T-LGLL clonotype.

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