Home LiteratureArticle Details
PMID: 17891368 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Molecular determinants of immunogenic cell death: surface exposure of calreticulin makes the difference.

Journal of molecular medicine (Berlin, Germany) ·Vol. 85 ·No. 10 ·2007-10-00 ·Pages 1069-76

Chaput N, De Botton S, Obeid M, Apetoh L, Ghiringhelli F, Panaretakis T, Flament C, Zitvogel L, Kroemer G

Abstract

The treatment of cancer by chemotherapy causes tumour cell death, mostly by apoptosis. This tumour cell death may or may not elicit an immune response. At least in some cases, the efficacy of chemotherapy critically depends on the induction of immunogenic cell death that is a type of cell demise that stimulates the activation of an adaptative anti-tumour immune response, which in turn helps to eradicate residual cancer (stem) cells. Indeed, anthracyclins care more efficient in curing tumours in immunocompetent than in T cell-deficient mice. The molecular mechanism implicated in this anti-tumour T cell activation was recently discovered. Anthracyclins cause immunogenic cell death due to their specific capacity to stimulate the translocation of calreticulin to the cell surface. Calreticulin then acts as an "eat me" signal for dendritic cells, allowing them to phagocytose tumour cells and to prime tumour antigen-specific cytotoxic T cells. Importantly, non-immunogenic chemotherapy can be rendered immunogenic by adsorbing recombinant calreticulin to tumour cells or by enforcing the translocation of endogenous calreticulin to the cell surface by means of PP1/GADD34 inhibitors. This strategy could have major implications for the treatment of human cancer. Indeed, in vivo treatments with anthracyclins can cause the translocation of calreticulin to the surface of circulating tumour cells, in patients with acute myeloid leukaemia (AML). The challenge will be to determine whether the exposure of calreticulin translocation on the tumour cell surface is linked to chemotherapy-induced anti-tumour immune responses and therapeutic efficacy in human cancer.

MeSH Terms
Animals Anthracyclines/pharmacology,therapeutic use Antigens, Neoplasm/drug effects,immunology,metabolism Antigens, Surface/drug effects,immunology,metabolism Antineoplastic Agents/pharmacology Apoptosis/drug effects,immunology Calreticulin/immunology,metabolism Cell Line, Tumor Cell Membrane/drug effects,immunology,metabolism Dendritic Cells/immunology Humans Mice Models, Biological Neoplasms, Experimental/immunology T-Lymphocytes, Cytotoxic/immunology
Chemicals
Anthracyclines Antigens, Neoplasm Antigens, Surface Antineoplastic Agents Calreticulin
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Chaput Nathalie
Centre d'Investigation Clinique Biothérapie, Institut Gustave Roussy, Villejuif, France.
De Botton Stéphane
Obeid Michel
Apetoh Lionel
Ghiringhelli François
Panaretakis Theocharis
Flament Caroline
Zitvogel Laurence
Kroemer Guido
References (77)
77 references, click to expand
  1. Functional characterization of T lymphocytes derived from patients with acute myelogenous leukemia and chemotherapy-induced leukopenia.
    Cancer Immunol Immunother. 2004 Aug;53(8):740-7 PMID: 15133630
  2. Immune responses to the HLA-A*0201-restricted epitopes of tyrosinase and glycoprotein 100 enable control of melanoma outgrowth in HLA-A*0201-transgenic mice.
    J Immunol. 2001 Nov 1;167(9):4853-60 PMID: 11673489
  3. By binding SIRPalpha or calreticulin/CD91, lung collectins act as dual function surveillance molecules to suppress or enhance inflammation.
    Cell. 2003 Oct 3;115(1):13-23 PMID: 14531999
  4. Apoptotic cells deliver processed antigen to dendritic cells for cross-presentation.
    PLoS Biol. 2005 Jun;3(6):e185 PMID: 15839733
  5. Expression of tumor-associated antigens in acute myeloid leukemia: Implications for specific immunotherapeutic approaches.
    Blood. 2006 Dec 15;108(13):4109-17 PMID: 16931630
  6. Antigen-specific T-cell memory is preserved in children treated for acute lymphoblastic leukemia.
    Blood. 2005 Sep 1;106(5):1749-54 PMID: 15920008
  7. Cellular functions of endoplasmic reticulum chaperones calreticulin, calnexin, and ERp57.
    Int Rev Cytol. 2005;245:91-121 PMID: 16125546
  8. Organelle-specific initiation of cell death pathways.
    Nat Cell Biol. 2001 Nov;3(11):E255-63 PMID: 11715037
  9. Dendritic cells acquire the MAGE-3 human tumor antigen from apoptotic cells and induce a class I-restricted T cell response.
    Proc Natl Acad Sci U S A. 2000 Feb 29;97(5):2185-90 PMID: 10681453
  10. The induction of tolerance by dendritic cells that have captured apoptotic cells.
    J Exp Med. 2000 Feb 7;191(3):411-6 PMID: 10662786
  11. Apoptotic, but not necrotic, tumor cell vaccines induce a potent immune response in vivo.
    Int J Cancer. 2003 Jan 10;103(2):205-11 PMID: 12455034
  12. C1q and mannose binding lectin engagement of cell surface calreticulin and CD91 initiates macropinocytosis and uptake of apoptotic cells.
    J Exp Med. 2001 Sep 17;194(6):781-95 PMID: 11560994
  13. Caspase-independent cell death.
    Nat Med. 2005 Jul;11(7):725-30 PMID: 16015365
  14. Increased immunogenicity of colon cancer cells by selective depletion of cytochrome C.
    Cancer Res. 2004 Apr 15;64(8):2705-11 PMID: 15087383
  15. Uptake of apoptotic antigen-coupled cells by lymphoid dendritic cells and cross-priming of CD8(+) T cells produce active immune unresponsiveness.
    J Immunol. 2002 Jun 1;168(11):5589-95 PMID: 12023355
  16. Calreticulin: one protein, one gene, many functions.
    Biochem J. 1999 Dec 1;344 Pt 2:281-92 PMID: 10567207
  17. Cancer vaccines for patients with acute myeloid leukemia--definition of leukemia-associated antigens and current clinical protocols targeting these antigens.
    Haematologica. 2006 Dec;91(12):1653-61 PMID: 17145602
  18. Immune response against dying tumor cells.
    Adv Immunol. 2004;84:131-79 PMID: 15246252
  19. Combination of chemotherapy and immunotherapy for cancer: a paradigm revisited.
    Lancet Oncol. 2007 Jan;8(1):2-3 PMID: 17196504
  20. Death and anti-death: tumour resistance to apoptosis.
    Nat Rev Cancer. 2002 Apr;2(4):277-88 PMID: 12001989
  21. Specific recruitment of regulatory T cells in ovarian carcinoma fosters immune privilege and predicts reduced survival.
    Nat Med. 2004 Sep;10(9):942-9 PMID: 15322536
  22. Dendritic cell surface calreticulin is a receptor for NY-ESO-1: direct interactions between tumor-associated antigen and the innate immune system.
    J Immunol. 2006 Sep 15;177(6):3582-9 PMID: 16951317
  23. A phase I study of dexosome immunotherapy in patients with advanced non-small cell lung cancer.
    J Transl Med. 2005 Feb 21;3(1):9 PMID: 15723705
  24. Apoptosis: a basic biological phenomenon with wide-ranging implications in tissue kinetics.
    Br J Cancer. 1972 Aug;26(4):239-57 PMID: 4561027
  25. The role of regulatory T cells in the control of natural killer cells: relevance during tumor progression.
    Immunol Rev. 2006 Dec;214:229-38 PMID: 17100888
  26. Phosphatidylserine-dependent engulfment by macrophages of nuclei from erythroid precursor cells.
    Nature. 2005 Sep 29;437(7059):754-8 PMID: 16193055
  27. Bone marrow-resident memory T cells survive pretransplant chemotherapy and contribute to early immune reconstitution of patients with acute myeloid leukemia given mafosfamide-purged autologous bone marrow transplantation.
    Exp Hematol. 2005 Feb;33(2):212-8 PMID: 15676215
  28. Calreticulin exposure dictates the immunogenicity of cancer cell death.
    Nat Med. 2007 Jan;13(1):54-61 PMID: 17187072
  29. Cell-surface calreticulin initiates clearance of viable or apoptotic cells through trans-activation of LRP on the phagocyte.
    Cell. 2005 Oct 21;123(2):321-34 PMID: 16239148
  30. Clearance of apoptotic cells: getting rid of the corpses.
    Mol Cell. 2004 May 7;14(3):277-87 PMID: 15125832
  31. Phagocyte receptors for apoptotic cells: recognition, uptake, and consequences.
    J Clin Invest. 2001 Oct;108(7):957-62 PMID: 11581295
  32. The danger model: a renewed sense of self.
    Science. 2002 Apr 12;296(5566):301-5 PMID: 11951032
  33. Chemoimmunotherapy of tumors: cyclophosphamide synergizes with exosome based vaccines.
    J Immunol. 2006 Mar 1;176(5):2722-9 PMID: 16493027
  34. Adiponectin modulates inflammatory reactions via calreticulin receptor-dependent clearance of early apoptotic bodies.
    J Clin Invest. 2007 Feb;117(2):375-86 PMID: 17256056
  35. Roles for calreticulin and a novel glycoprotein, tapasin, in the interaction of MHC class I molecules with TAP.
    Immunity. 1996 Aug;5(2):103-14 PMID: 8769474
  36. Vaccination with p53 peptide-pulsed dendritic cells is associated with disease stabilization in patients with p53 expressing advanced breast cancer; monitoring of serum YKL-40 and IL-6 as response biomarkers.
    Cancer Immunol Immunother. 2007 Sep;56(9):1485-99 PMID: 17285289
  37. New strategies for the treatment of acute myeloid leukemia including antibodies and other novel agents.
    Hematology Am Soc Hematol Educ Program. 2005;:143-50 PMID: 16304372
  38. Natural killer cells play a key role in the antitumor immunity generated by chaperone-rich cell lysate vaccination.
    Int J Cancer. 2006 Dec 1;119(11):2624-31 PMID: 16989012
  39. A randomized phase II study of docetaxel alone or in combination with PANVAC-V (vaccinia) and PANVAC-F (fowlpox) in patients with metastatic breast cancer (NCI 05-C-0229).
    Clin Breast Cancer. 2006 Jun;7(2):176-9 PMID: 16800982
  40. Dendritic cells acquire antigen from apoptotic cells and induce class I-restricted CTLs.
    Nature. 1998 Mar 5;392(6671):86-9 PMID: 9510252
  41. Calreticulin.
    Cell. 1997 Feb 21;88(4):439-43 PMID: 9038335
  42. Human bladder carcinoma is dominated by T-regulatory cells and Th1 inhibitory cytokines.
    J Urol. 2007 Jan;177(1):353-8 PMID: 17162090
  43. Autoimmune disease and impaired uptake of apoptotic cells in MFG-E8-deficient mice.
    Science. 2004 May 21;304(5674):1147-50 PMID: 15155946
  44. Specificity of the immune response leading to protection or enhancement by regressive and progressive variants of a rat colon carcinoma.
    Int J Cancer. 1988 Dec 15;42(6):883-6 PMID: 3263952
  45. Metronomic cyclophosphamide regimen selectively depletes CD4+CD25+ regulatory T cells and restores T and NK effector functions in end stage cancer patients.
    Cancer Immunol Immunother. 2007 May;56(5):641-8 PMID: 16960692
  46. T cell immunity induced by live, necrotic, and apoptotic tumor cells.
    J Immunol. 2004 Jul 15;173(2):1012-22 PMID: 15240689
  47. The ins and outs of calreticulin: from the ER lumen to the extracellular space.
    Trends Cell Biol. 2001 Mar;11(3):122-9 PMID: 11306273
  48. Dendritic cells cross-present HIV antigens from live as well as apoptotic infected CD4+ T lymphocytes.
    Proc Natl Acad Sci U S A. 2004 Apr 20;101(16):6092-7 PMID: 15079077
  49. Efficacy of adjuvant immunochemotherapy with polysaccharide K for patients with curative resections of gastric cancer.
    Cancer Immunol Immunother. 2007 Jun;56(6):905-11 PMID: 17106715
  50. Cyclophosphamide enhances the antitumor efficacy of adoptively transferred immune cells through the induction of cytokine expression, B-cell and T-cell homeostatic proliferation, and specific tumor infiltration.
    Clin Cancer Res. 2007 Jan 15;13(2 Pt 1):644-53 PMID: 17255288
  51. CD4+CD25+FOXP3+ regulatory T cells suppress anti-tumor immune responses in patients with colorectal cancer.
    PLoS One. 2006 Dec 27;1:e129 PMID: 17205133
  52. Immune tolerance after delivery of dying cells to dendritic cells in situ.
    J Exp Med. 2002 Oct 21;196(8):1091-7 PMID: 12391020
  53. Masking of phosphatidylserine inhibits apoptotic cell engulfment and induces autoantibody production in mice.
    J Exp Med. 2004 Aug 16;200(4):459-67 PMID: 15302904
  54. Cancer regression and autoimmunity induced by cytotoxic T lymphocyte-associated antigen 4 blockade in patients with metastatic melanoma.
    Proc Natl Acad Sci U S A. 2003 Jul 8;100(14):8372-7 PMID: 12826605
  55. Enhancement of vaccine-mediated antitumor immunity in cancer patients after depletion of regulatory T cells.
    J Clin Invest. 2005 Dec;115(12):3623-33 PMID: 16308572
  56. Strategies for antigen loading of dendritic cells to enhance the antitumor immune response.
    Cancer Res. 2002 Mar 15;62(6):1884-9 PMID: 11912169
  57. CD4+CD25+ regulatory T cells suppress tumor immunity but are sensitive to cyclophosphamide which allows immunotherapy of established tumors to be curative.
    Eur J Immunol. 2004 Feb;34(2):336-44 PMID: 14768038
  58. Dendritic cells generated from acute myeloid leukemia (AML) blasts maintain the expression of immunogenic leukemia associated antigens.
    Cancer Immunol Immunother. 2005 Jul;54(7):685-93 PMID: 15627212
  59. Immunotherapy via dendritic cells.
    Adv Exp Med Biol. 2005;560:105-14 PMID: 15932026
  60. Corpse clearance defines the meaning of cell death.
    Nature. 2000 Oct 12;407(6805):784-8 PMID: 11048729
  61. Identification of calreticulin as a marker for phagocytosis of apoptotic cells in Drosophila.
    Exp Cell Res. 2007 Feb 1;313(3):500-10 PMID: 17137576
  62. Transcriptional suppression of interleukin-12 gene expression following phagocytosis of apoptotic cells.
    Immunity. 2004 Nov;21(5):643-53 PMID: 15539151
  63. Role of surfactant proteins A, D, and C1q in the clearance of apoptotic cells in vivo and in vitro: calreticulin and CD91 as a common collectin receptor complex.
    J Immunol. 2002 Oct 1;169(7):3978-86 PMID: 12244199
  64. Interaction between phosphatidylserine and the phosphatidylserine receptor inhibits immune responses in vivo.
    J Immunol. 2005 Feb 1;174(3):1393-404 PMID: 15661897
  65. Dendritic cells and the control of immunity.
    Nature. 1998 Mar 19;392(6673):245-52 PMID: 9521319
  66. Cutaneous T-cell lymphoma: malignant proliferation of T-regulatory cells.
    Blood. 2005 Feb 15;105(4):1640-7 PMID: 15514008
  67. The nature of the MHC class I peptide loading complex.
    Immunol Rev. 1999 Dec;172:21-8 PMID: 10631934
  68. Autologous dendritic cell vaccines for non-small-cell lung cancer.
    J Clin Oncol. 2004 Jul 15;22(14):2808-15 PMID: 15254048
  69. Isolation of a high affinity calcium-binding protein from sarcoplasmic reticulum.
    J Biol Chem. 1974 Feb 10;249(3):974-9 PMID: 4272851
  70. Efficacy of adjuvant immunochemotherapy with polysaccharide K for patients with curatively resected colorectal cancer: a meta-analysis of centrally randomized controlled clinical trials.
    Cancer Immunol Immunother. 2006 Apr;55(4):404-11 PMID: 16133112
  71. Vaccination of metastatic melanoma patients with autologous dendritic cell (DC) derived-exosomes: results of thefirst phase I clinical trial.
    J Transl Med. 2005 Mar 02;3(1):10 PMID: 15740633
  72. Apoptotic cell removal in development and tissue homeostasis.
    Trends Immunol. 2006 May;27(5):244-50 PMID: 16584921
  73. Transforming growth factor-beta facilitates breast carcinoma metastasis by promoting tumor cell survival.
    Clin Exp Metastasis. 2004;21(3):235-42 PMID: 15387373
  74. Immunotherapy: bewitched, bothered, and bewildered no more.
    Science. 2004 Jul 9;305(5681):197-200 PMID: 15247468
  75. Caspase-dependent immunogenicity of doxorubicin-induced tumor cell death.
    J Exp Med. 2005 Dec 19;202(12):1691-701 PMID: 16365148
  76. Circulating blood dendritic cells from myeloid leukemia patients display quantitative and cytogenetic abnormalities as well as functional impairment.
    Blood. 2001 Dec 15;98(13):3750-6 PMID: 11739182
  77. Dendritic cells as therapeutic vaccines against cancer.
    Nat Rev Immunol. 2005 Apr;5(4):296-306 PMID: 15803149
Article Info
Journal
Journal of molecular medicine (Berlin, Germany)
Abbr.
J Mol Med (Berl)
ISSN
0946-2716
Published
2007-10-00
Epub
2007-00-22
Pages
1069-76
Language
English
Region
Germany
NLM ID
9504370
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]