Membrane-associated Hsp72 from tumor-derived exosomes mediates STAT3-dependent immunosuppressive function of mouse and human myeloid-derived suppressor cells

Fanny Chalmin(Inserm), Sylvain Ladoire(Fondation de l'Avenir), Grégoire Mignot(Inserm), Julie Vincent(Fondation de l'Avenir), Mélanie Bruchard(Inserm), Jean-Paul Rémy-Martin, Wilfrid Boireau(Franche-Comté Électronique Mécanique Thermique et Optique - Sciences et Technologies), Alain Rouleau(Franche-Comté Électronique Mécanique Thermique et Optique - Sciences et Technologies), B. Simon(Franche-Comté Électronique Mécanique Thermique et Optique - Sciences et Technologies), David Lanneau(Inserm), Aurélie de Thonel(Université Paris Cité), Gabriele Multhoff(Technical University of Munich), Arlette Hamman(Inserm), François Martin(Université de Bourgogne), Bruno Chauffert(Inserm), Éric Solary(Inserm), Laurence Zitvogel(Inserm), Carmen Garrido(Inserm), Bernhard Ryffel, Christophe Borg, Lionel Apétoh(Brigham and Women's Hospital), Cédric Rébé(Centre Georges François Leclerc), François Ghiringhelli(Inserm)
Journal of Clinical Investigation
January 19, 2010
Cited by 985Open Access
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Abstract

Myeloid-derived suppressor cells (MDSCs) have been identified in humans and mice as a population of immature myeloid cells with the ability to suppress T cell activation. They accumulate in tumor-bearing mice and humans and have been shown to contribute to cancer development. Here, we have isolated tumor-derived exosomes (TDEs) from mouse cell lines and shown that an interaction between TDE-associated Hsp72 and MDSCs determines the suppressive activity of the MDSCs via activation of Stat3. In addition, tumor-derived soluble factors triggered MDSC expansion via activation of Erk. TDE-associated Hsp72 triggered Stat3 activation in MDSCs in a TLR2/MyD88-dependent manner through autocrine production of IL-6. Importantly, decreasing exosome production using dimethyl amiloride enhanced the in vivo antitumor efficacy of the chemotherapeutic drug cyclophosphamide in 3 different mouse tumor models. We also demonstrated that this mechanism is relevant in cancer patients, as TDEs from a human tumor cell line activated human MDSCs and triggered their suppressive function in an Hsp72/TLR2-dependent manner. Further, MDSCs from cancer patients treated with amiloride, a drug used to treat high blood pressure that also inhibits exosome formation, exhibited reduced suppressor functions. Collectively, our findings show in both mice and humans that Hsp72 expressed at the surface of TDEs restrains tumor immune surveillance by promoting MDSC suppressive functions.


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