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PMID: 26715645 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Bruton Tyrosine Kinase-Dependent Immune Cell Cross-talk Drives Pancreas Cancer.

Cancer discovery ·Vol. 6 ·No. 3 ·2016-03-00 ·Pages 270-85

Gunderson AJ, Kaneda MM, Tsujikawa T, Nguyen AV, Affara NI, Ruffell B, Gorjestani S, Liudahl SM, Truitt M, Olson P, Kim G, Hanahan D, Tempero MA, Sheppard B, Irving B, Chang BY, Varner JA, Coussens LM

Abstract

Pancreas ductal adenocarcinoma (PDAC) has one of the worst 5-year survival rates of all solid tumors, and thus new treatment strategies are urgently needed. Here, we report that targeting Bruton tyrosine kinase (BTK), a key B-cell and macrophage kinase, restores T cell-dependent antitumor immune responses, thereby inhibiting PDAC growth and improving responsiveness to standard-of-care chemotherapy. We report that PDAC tumor growth depends on cross-talk between B cells and FcRγ(+) tumor-associated macrophages, resulting in T(H)2-type macrophage programming via BTK activation in a PI3Kγ-dependent manner. Treatment of PDAC-bearing mice with the BTK inhibitor PCI32765 (ibrutinib) or by PI3Kγ inhibition reprogrammed macrophages toward a T(H)1 phenotype that fostered CD8(+) T-cell cytotoxicity, and suppressed PDAC growth, indicating that BTK signaling mediates PDAC immunosuppression. These data indicate that pharmacologic inhibition of BTK in PDAC can reactivate adaptive immune responses, presenting a new therapeutic modality for this devastating tumor type. We report that BTK regulates B-cell and macrophage-mediated T-cell suppression in pancreas adenocarcinomas. Inhibition of BTK with the FDA-approved inhibitor ibrutinib restores T cell-dependent antitumor immune responses to inhibit PDAC growth and improves responsiveness to chemotherapy, presenting a new therapeutic modality for pancreas cancer.

MeSH Terms
Agammaglobulinaemia Tyrosine Kinase Animals B-Lymphocytes/immunology,metabolism Biomarkers Carcinoma, Pancreatic Ductal/genetics,immunology,metabolism Cell Communication/immunology Cell Line, Tumor Class Ib Phosphatidylinositol 3-Kinase/metabolism Disease Models, Animal Disease Progression Humans Immune System/cytology,pathology Leukocytes/immunology,metabolism Macrophage Activation Macrophages/immunology,metabolism Mice Mice, Knockout Myeloid Cells/immunology,metabolism Pancreatic Neoplasms/genetics,immunology,metabolism Protein-Tyrosine Kinases/metabolism Receptors, IgG/metabolism Signal Transduction
Chemicals
Biomarkers Receptors, IgG Class Ib Phosphatidylinositol 3-Kinase Protein-Tyrosine Kinases Agammaglobulinaemia Tyrosine Kinase BTK protein, human Btk protein, mouse
Authors & Affiliations
18 authors, click to expand affiliations / ORCID
Gunderson Andrew J
Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon.
Kaneda Megan M
Moores Cancer Center, University of California, San Diego, La Jolla, California.
Tsujikawa Takahiro
Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon. Department of Otolaryngology-Head and Neck Surgery, Oregon Health and Science University, Portland, Oregon.
Nguyen Abraham V
Moores Cancer Center, University of California, San Diego, La Jolla, California.
Affara Nesrine I
Department of Pathology, University of California, San Francisco, California.
Ruffell Brian
Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon.
Gorjestani Sara
Moores Cancer Center, University of California, San Diego, La Jolla, California.
Liudahl Shannon M
Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon.
Truitt Morgan
Department of Biochemistry and Biophysics, University of California, San Francisco, California.
Olson Peter
Department of Biochemistry and Biophysics, University of California, San Francisco, California.
Kim Grace
Department of Pathology, University of California, San Francisco, California. Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, California.
Hanahan Douglas
Swiss Institute for Experimental Cancer Research, Swiss Federal Institute of Technology, Lausanne, Switzerland.
Tempero Margaret A
Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, California. Department of Medicine, University of California, San Francisco, California.
Sheppard Brett
Department of Surgery, Oregon Health and Science University, Portland, Oregon. Knight Cancer Institute, Oregon Health and Science University, Portland, Oregon.
Irving Bryan
Genentech, South San Francisco, California.
Chang Betty Y
Pharmacyclics Inc., Sunnyvale, California.
Varner Judith A
Moores Cancer Center, University of California, San Diego, La Jolla, California. Department of Pathology, University of California, San Diego, La Jolla, California. [email protected] [email protected].
Coussens Lisa M
Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon. Knight Cancer Institute, Oregon Health and Science University, Portland, Oregon. [email protected] [email protected].
References (50)
50 references, click to expand
  1. Immunoglobulin gene rearrangement in B cell deficient mice generated by targeted deletion of the JH locus.
    Int Immunol. 1993 Jun;5(6):647-56 PMID: 8347558
  2. Ibrutinib exerts potent antifibrotic and antitumor activities in mouse models of pancreatic adenocarcinoma.
    Cancer Res. 2015 Apr 15;75(8):1675-81 PMID: 25878147
  3. IL35-Producing B Cells Promote the Development of Pancreatic Neoplasia.
    Cancer Discov. 2016 Mar;6(3):247-55 PMID: 26715643
  4. Neutralizing tumor-promoting chronic inflammation: a magic bullet?
    Science. 2013 Jan 18;339(6117):286-91 PMID: 23329041
  5. A distinct and unique transcriptional program expressed by tumor-associated macrophages (defective NF-kappaB and enhanced IRF-3/STAT1 activation).
    Blood. 2006 Mar 1;107(5):2112-22 PMID: 16269622
  6. Bruton's tyrosine kinase and phospholipase Cgamma2 mediate chemokine-controlled B cell migration and homing.
    Immunity. 2007 Jan;26(1):93-104 PMID: 17239630
  7. Analysis of lung tumor initiation and progression using conditional expression of oncogenic K-ras.
    Genes Dev. 2001 Dec 15;15(24):3243-8 PMID: 11751630
  8. IL-4 induces cathepsin protease activity in tumor-associated macrophages to promote cancer growth and invasion.
    Genes Dev. 2010 Feb 1;24(3):241-55 PMID: 20080943
  9. A Listeria vaccine and depletion of T-regulatory cells activate immunity against early stage pancreatic intraepithelial neoplasms and prolong survival of mice.
    Gastroenterology. 2014 Jun;146(7):1784-94.e6 PMID: 24607504
  10. Receptor tyrosine kinases and TLR/IL1Rs unexpectedly activate myeloid cell PI3kγ, a single convergent point promoting tumor inflammation and progression.
    Cancer Cell. 2011 Jun 14;19(6):715-27 PMID: 21665146
  11. Discovery of 3,3'-(2,4-diaminopteridine-6,7-diyl)diphenol as an isozyme-selective inhibitor of PI3K for the treatment of ischemia reperfusion injury associated with myocardial infarction.
    J Med Chem. 2007 Sep 6;50(18):4279-94 PMID: 17685602
  12. B regulatory cells and the tumor-promoting actions of TNF-α during squamous carcinogenesis.
    Proc Natl Acad Sci U S A. 2011 Jun 28;108(26):10662-7 PMID: 21670304
  13. FOLFIRINOX versus gemcitabine for metastatic pancreatic cancer.
    N Engl J Med. 2011 May 12;364(19):1817-25 PMID: 21561347
  14. Both p16(Ink4a) and the p19(Arf)-p53 pathway constrain progression of pancreatic adenocarcinoma in the mouse.
    Proc Natl Acad Sci U S A. 2006 Apr 11;103(15):5947-52 PMID: 16585505
  15. PI3-kinase γ promotes Rap1a-mediated activation of myeloid cell integrin α4β1, leading to tumor inflammation and growth.
    PLoS One. 2013;8(4):e60226 PMID: 23565202
  16. Direct evidence for the pancreatic lineage: NGN3+ cells are islet progenitors and are distinct from duct progenitors.
    Development. 2002 May;129(10):2447-57 PMID: 11973276
  17. Macrophage polarization to a unique phenotype driven by B cells.
    Eur J Immunol. 2010 Aug;40(8):2296-307 PMID: 20468007
  18. Endogenous oncogenic K-ras(G12D) stimulates proliferation and widespread neoplastic and developmental defects.
    Cancer Cell. 2004 Apr;5(4):375-87 PMID: 15093544
  19. Macrophage IL-10 blocks CD8+ T cell-dependent responses to chemotherapy by suppressing IL-12 expression in intratumoral dendritic cells.
    Cancer Cell. 2014 Nov 10;26(5):623-37 PMID: 25446896
  20. Induction of medulloblastomas in p53-null mutant mice by somatic inactivation of Rb in the external granular layer cells of the cerebellum.
    Genes Dev. 2000 Apr 15;14(8):994-1004 PMID: 10783170
  21. Leukocyte complexity predicts breast cancer survival and functionally regulates response to chemotherapy.
    Cancer Discov. 2011 Jun;1(1):54-67 PMID: 22039576
  22. Therapeutic antitumor immunity by checkpoint blockade is enhanced by ibrutinib, an inhibitor of both BTK and ITK.
    Proc Natl Acad Sci U S A. 2015 Mar 3;112(9):E966-72 PMID: 25730880
  23. Targeting Bruton's tyrosine kinase in B cell malignancies.
    Nat Rev Cancer. 2014 Apr;14(4):219-32 PMID: 24658273
  24. Nilotinib reduces muscle fibrosis in chronic muscle injury by promoting TNF-mediated apoptosis of fibro/adipogenic progenitors.
    Nat Med. 2015 Jul;21(7):786-94 PMID: 26053624
  25. CD40 agonists alter tumor stroma and show efficacy against pancreatic carcinoma in mice and humans.
    Science. 2011 Mar 25;331(6024):1612-6 PMID: 21436454
  26. Preinvasive and invasive ductal pancreatic cancer and its early detection in the mouse.
    Cancer Cell. 2003 Dec;4(6):437-50 PMID: 14706336
  27. Divergent effects of interleukin-4 and interferon-gamma on macrophage-derived chemokine production: an amplification circuit of polarized T helper 2 responses.
    Blood. 1998 Oct 15;92(8):2668-71 PMID: 9763548
  28. Myeloid cells in tumor inflammation.
    Vasc Cell. 2012 Sep 03;4(1):14 PMID: 22938502
  29. Cancer cell-autonomous contribution of type I interferon signaling to the efficacy of chemotherapy.
    Nat Med. 2014 Nov;20(11):1301-9 PMID: 25344738
  30. Combined blockade of integrin-α4β1 plus cytokines SDF-1α or IL-1β potently inhibits tumor inflammation and growth.
    Cancer Res. 2011 Nov 15;71(22):6965-75 PMID: 21948958
  31. Pancreatic ductal adenocarcinoma contains an effector and regulatory immune cell infiltrate that is altered by multimodal neoadjuvant treatment.
    PLoS One. 2014;9(5):e96565 PMID: 24794217
  32. Cancer statistics, 2012.
    CA Cancer J Clin. 2012 Jan-Feb;62(1):10-29 PMID: 22237781
  33. B-cell-derived lymphotoxin promotes castration-resistant prostate cancer.
    Nature. 2010 Mar 11;464(7286):302-5 PMID: 20220849
  34. FcR gamma chain deletion results in pleiotrophic effector cell defects.
    Cell. 1994 Feb 11;76(3):519-29 PMID: 8313472
  35. FcRgamma activation regulates inflammation-associated squamous carcinogenesis.
    Cancer Cell. 2010 Feb 17;17(2):121-34 PMID: 20138013
  36. Inhibitory effects of B cells on antitumor immunity.
    Cancer Res. 2006 Aug 1;66(15):7741-7 PMID: 16885377
  37. Radiation and dual checkpoint blockade activate non-redundant immune mechanisms in cancer.
    Nature. 2015 Apr 16;520(7547):373-7 PMID: 25754329
  38. Tumor infiltrating B-cells are increased in prostate cancer tissue.
    J Transl Med. 2014;12:30 PMID: 24475900
  39. Gemcitabine plus nab-paclitaxel is an active regimen in patients with advanced pancreatic cancer: a phase I/II trial.
    J Clin Oncol. 2011 Dec 1;29(34):4548-54 PMID: 21969517
  40. B cells regulate macrophage phenotype and response to chemotherapy in squamous carcinomas.
    Cancer Cell. 2014 Jun 16;25(6):809-21 PMID: 24909985
  41. Modeling the clinical phenotype of BTK inhibition in the mature murine immune system.
    J Immunol. 2014 Jul 1;193(1):185-97 PMID: 24899507
  42. Oncogenic Kras-induced GM-CSF production promotes the development of pancreatic neoplasia.
    Cancer Cell. 2012 Jun 12;21(6):836-47 PMID: 22698407
  43. Immunosuppressive plasma cells impede T-cell-dependent immunogenic chemotherapy.
    Nature. 2015 May 7;521(7550):94-8 PMID: 25924065
  44. CD4(+) T cells regulate pulmonary metastasis of mammary carcinomas by enhancing protumor properties of macrophages.
    Cancer Cell. 2009 Aug 4;16(2):91-102 PMID: 19647220
  45. FDA grants accelerated approval for ibrutinib for CLL.
    Am J Manag Care. 2014 Mar;20(5 Spec No.):E10 PMID: 25618623
  46. Loss of p16Ink4a with retention of p19Arf predisposes mice to tumorigenesis.
    Nature. 2001 Sep 6;413(6851):86-91 PMID: 11544531
  47. Alternatively activated macrophages promote pancreatic fibrosis in chronic pancreatitis.
    Nat Commun. 2015;6:7158 PMID: 25981357
  48. Colony-stimulating factor 1 promotes progression of mammary tumors to malignancy.
    J Exp Med. 2001 Mar 19;193(6):727-40 PMID: 11257139
  49. Hif1a Deletion Reveals Pro-Neoplastic Function of B Cells in Pancreatic Neoplasia.
    Cancer Discov. 2016 Mar;6(3):256-69 PMID: 26715642
  50. Accessories to the crime: functions of cells recruited to the tumor microenvironment.
    Cancer Cell. 2012 Mar 20;21(3):309-22 PMID: 22439926
Article Info
Journal
Cancer discovery
Abbr.
Cancer Discov
ISSN
2159-8290
Published
2016-03-00
Epub
2015-00-29
Pages
270-85
Language
English
Region
United States
NLM ID
101561693
PMCID
PMC4783268
Subset
IM
Grants
NCI NIH HHS · R01 CA083133 · United States
NCI NIH HHS · R01CA167426-03S1 · United States
NCI NIH HHS · R01CA130980 · United States
NCI NIH HHS · R01CA126820 · United States
NCI NIH HHS · T32 CA121938 · United States
NCI NIH HHS · R01 CA126820 · United States
NHLBI NIH HHS · T32HL098062 · United States
NHLBI NIH HHS · T32 HL098062 · United States
NCI NIH HHS · R01 CA155331 · United States
NCI NIH HHS · R01CA140943 · United States
NCI NIH HHS · R01CA083133 · United States
NCI NIH HHS · R01CA167426 · United States
NCI NIH HHS · T32CA009523 · United States
NCI NIH HHS · R01 CA167426 · United States
NCI NIH HHS · R01 CA140943 · United States
NCI NIH HHS · R01 CA098048 · United States
NCI NIH HHS · U54CA163123 · United States
NIAID NIH HHS · T32AI078903-04 · United States
NCI NIH HHS · R01 CA130980 · United States
NCI NIH HHS · U54 CA163123 · United States
NIAID NIH HHS · T32 AI078903 · United States
NCI NIH HHS · T32CA121938 · United States
NCI NIH HHS · R01CA15531 · United States
NCI NIH HHS · T32 CA009523 · United States
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