| Literature DB >> 19767732 |
François Ghiringhelli1, Lionel Apetoh, Antoine Tesniere, Laetitia Aymeric, Yuting Ma, Carla Ortiz, Karim Vermaelen, Theocharis Panaretakis, Grégoire Mignot, Evelyn Ullrich, Jean-Luc Perfettini, Frédéric Schlemmer, Ezgi Tasdemir, Martin Uhl, Pierre Génin, Ahmet Civas, Bernhard Ryffel, Jean Kanellopoulos, Jürg Tschopp, Fabrice André, Rosette Lidereau, Nicole M McLaughlin, Nicole M Haynes, Mark J Smyth, Guido Kroemer, Laurence Zitvogel.
Abstract
The therapeutic efficacy of anticancer chemotherapies may depend on dendritic cells (DCs), which present antigens from dying cancer cells to prime tumor-specific interferon-gamma (IFN-gamma)-producing T lymphocytes. Here we show that dying tumor cells release ATP, which then acts on P2X(7) purinergic receptors from DCs and triggers the NOD-like receptor family, pyrin domain containing-3 protein (NLRP3)-dependent caspase-1 activation complex ('inflammasome'), allowing for the secretion of interleukin-1beta (IL-1beta). The priming of IFN-gamma-producing CD8+ T cells by dying tumor cells fails in the absence of a functional IL-1 receptor 1 and in Nlpr3-deficient (Nlrp3(-/-)) or caspase-1-deficient (Casp-1(-/-)) mice unless exogenous IL-1beta is provided. Accordingly, anticancer chemotherapy turned out to be inefficient against tumors established in purinergic receptor P2rx7(-/-) or Nlrp3(-/-) or Casp1(-/-) hosts. Anthracycline-treated individuals with breast cancer carrying a loss-of-function allele of P2RX7 developed metastatic disease more rapidly than individuals bearing the normal allele. These results indicate that the NLRP3 inflammasome links the innate and adaptive immune responses against dying tumor cells.Entities:
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Year: 2009 PMID: 19767732 DOI: 10.1038/nm.2028
Source DB: PubMed Journal: Nat Med ISSN: 1078-8956 Impact factor: 53.440