Common clonal origin of conventional T cells and induced regulatory T cells in breast cancer patients

Author:

Xydia MariaORCID,Rahbari RahelehORCID,Ruggiero Eliana,Macaulay Iain,Tarabichi Maxime,Lohmayer Robert,Wilkening Stefan,Michels TillmannORCID,Brown Daniel,Vanuytven Sebastiaan,Mastitskaya SvetlanaORCID,Laidlaw SeanORCID,Grabe Niels,Pritsch Maria,Fronza Raffaele,Hexel Klaus,Schmitt SteffenORCID,Müller-Steinhardt Michael,Halama NielsORCID,Domschke Christoph,Schmidt Manfred,von Kalle Christof,Schütz Florian,Voet Thierry,Beckhove PhilippORCID

Abstract

AbstractRegulatory CD4+ T cells (Treg) prevent tumor clearance by conventional T cells (Tconv) comprising a major obstacle of cancer immune-surveillance. Hitherto, the mechanisms of Treg repertoire formation in human cancers remain largely unclear. Here, we analyze Treg clonal origin in breast cancer patients using T-Cell Receptor and single-cell transcriptome sequencing. While Treg in peripheral blood and breast tumors are clonally distinct, Tconv clones, including tumor-antigen reactive effectors (Teff), are detected in both compartments. Tumor-infiltrating CD4+ cells accumulate into distinct transcriptome clusters, including early activated Tconv, uncommitted Teff, Th1 Teff, suppressive Treg and pro-tumorigenic Treg. Trajectory analysis suggests early activated Tconv differentiation either into Th1 Teff or into suppressive and pro-tumorigenic Treg. Importantly, Tconv, activated Tconv and Treg share highly-expanded clones contributing up to 65% of intratumoral Treg. Here we show that Treg in human breast cancer may considerably stem from antigen-experienced Tconv converting into secondary induced Treg through intratumoral activation.

Funder

This work was funded by the Collaborative Research Program (SFB TR221).

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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