Literature DB >> 31699796

Targeting CD39 in Cancer Reveals an Extracellular ATP- and Inflammasome-Driven Tumor Immunity.

Xian-Yang Li1, Achim K Moesta2, Christos Xiao3, Kyohei Nakamura1, Mika Casey1, Haiyan Zhang1, Jason Madore1, Ailin Lepletier1, Amelia Roman Aguilera1, Ashmitha Sundarrajan4, Celia Jacoberger-Foissac3, Clifford Wong2, Tracy Dela Cruz2, Megan Welch2, Alana G Lerner2, Bradley N Spatola2, Vanessa B Soros2, John Corbin2, Ana C Anderson5, Maike Effern6,7,8, Michael Hölzel6,7, Simon C Robson9, Rebecca L Johnston10, Nicola Waddell10, Corey Smith11, Tobias Bald4, Nishamol Geetha1, Courtney Beers2, Michele W L Teng3, Mark J Smyth12.   

Abstract

We explored the mechanism of action of CD39 antibodies that inhibit ectoenzyme CD39 conversion of extracellular ATP (eATP) to AMP and thus potentially augment eATP-P2-mediated proinflammatory responses. Using syngeneic and humanized tumor models, we contrast the potency and mechanism of anti-CD39 mAbs with other agents targeting the adenosinergic pathway. We demonstrate the critical importance of an eATP-P2X7-ASC-NALP3-inflammasome-IL18 pathway in the antitumor activity mediated by CD39 enzyme blockade, rather than simply reducing adenosine as mechanism of action. Efficacy of anti-CD39 activity was underpinned by CD39 and P2X7 coexpression on intratumor myeloid subsets, an early signature of macrophage depletion, and active IL18 release that facilitated the significant expansion of intratumor effector T cells. More importantly, anti-CD39 facilitated infiltration into T cell-poor tumors and rescued anti-PD-1 resistance. Anti-human CD39 enhanced human T-cell proliferation and Th1 cytokine production and suppressed human B-cell lymphoma in the context of autologous Epstein-Barr virus-specific T-cell transfer. SIGNIFICANCE: Overall, these data describe a potent and novel mechanism of action of antibodies that block mouse or human CD39, triggering an eATP-P2X7-inflammasome-IL18 axis that reduces intratumor macrophage number, enhances intratumor T-cell effector function, overcomes anti-PD-1 resistance, and potentially enhances the efficacy of adoptive T-cell transfer.This article is highlighted in the In This Issue feature, p. 1631. ©2019 American Association for Cancer Research.

Entities:  

Year:  2019        PMID: 31699796      PMCID: PMC6891207          DOI: 10.1158/2159-8290.CD-19-0541

Source DB:  PubMed          Journal:  Cancer Discov        ISSN: 2159-8274            Impact factor:   39.397


  69 in total

1.  CD39: A complementary target to immune checkpoints to counteract tumor-mediated immunosuppression.

Authors:  Nathalie Bonnefoy; Jérémy Bastid; Gilles Alberici; Armand Bensussan; Jean-François Eliaou
Journal:  Oncoimmunology       Date:  2015-02-03       Impact factor: 8.110

Review 2.  Regulation of the T Cell Response by CD39.

Authors:  Maisa C Takenaka; Simon Robson; Francisco J Quintana
Journal:  Trends Immunol       Date:  2016-05-25       Impact factor: 16.687

Review 3.  The P2X7 receptor: A main player in inflammation.

Authors:  Elena Adinolfi; Anna Lisa Giuliani; Elena De Marchi; Anna Pegoraro; Elisa Orioli; Francesco Di Virgilio
Journal:  Biochem Pharmacol       Date:  2017-12-27       Impact factor: 5.858

4.  Targeted disruption of cd39/ATP diphosphohydrolase results in disordered hemostasis and thromboregulation.

Authors:  K Enjyoji; J Sévigny; Y Lin; P S Frenette; P D Christie; J S Esch; M Imai; J M Edelberg; H Rayburn; M Lech; D L Beeler; E Csizmadia; D D Wagner; S C Robson; R D Rosenberg
Journal:  Nat Med       Date:  1999-09       Impact factor: 53.440

Review 5.  Targeting A2 adenosine receptors in cancer.

Authors:  David Allard; Martin Turcotte; John Stagg
Journal:  Immunol Cell Biol       Date:  2017-02-08       Impact factor: 5.126

6.  Bystander CD8+ T cells are abundant and phenotypically distinct in human tumour infiltrates.

Authors:  Yannick Simoni; Etienne Becht; Michael Fehlings; Chiew Yee Loh; Si-Lin Koo; Karen Wei Weng Teng; Joe Poh Sheng Yeong; Rahul Nahar; Tong Zhang; Hassen Kared; Kaibo Duan; Nicholas Ang; Michael Poidinger; Yin Yeng Lee; Anis Larbi; Alexis J Khng; Emile Tan; Cherylin Fu; Ronnie Mathew; Melissa Teo; Wan Teck Lim; Chee Keong Toh; Boon-Hean Ong; Tina Koh; Axel M Hillmer; Angela Takano; Tony Kiat Hon Lim; Eng Huat Tan; Weiwei Zhai; Daniel S W Tan; Iain Beehuat Tan; Evan W Newell
Journal:  Nature       Date:  2018-05-16       Impact factor: 49.962

7.  Expression of ectonucleotidase CD39 by Foxp3+ Treg cells: hydrolysis of extracellular ATP and immune suppression.

Authors:  Giovanna Borsellino; Markus Kleinewietfeld; Diletta Di Mitri; Alexander Sternjak; Adamo Diamantini; Raffaella Giometto; Sabine Höpner; Diego Centonze; Giorgio Bernardi; Maria Luisa Dell'Acqua; Paolo Maria Rossini; Luca Battistini; Olaf Rötzschke; Kirsten Falk
Journal:  Blood       Date:  2007-04-20       Impact factor: 22.113

8.  RNA-SeQC: RNA-seq metrics for quality control and process optimization.

Authors:  David S DeLuca; Joshua Z Levin; Andrey Sivachenko; Timothy Fennell; Marc-Danie Nazaire; Chris Williams; Michael Reich; Wendy Winckler; Gad Getz
Journal:  Bioinformatics       Date:  2012-04-25       Impact factor: 6.937

9.  Defining T Cell States Associated with Response to Checkpoint Immunotherapy in Melanoma.

Authors:  Moshe Sade-Feldman; Keren Yizhak; Stacey L Bjorgaard; John P Ray; Carl G de Boer; Russell W Jenkins; David J Lieb; Jonathan H Chen; Dennie T Frederick; Michal Barzily-Rokni; Samuel S Freeman; Alexandre Reuben; Paul J Hoover; Alexandra-Chloé Villani; Elena Ivanova; Andrew Portell; Patrick H Lizotte; Amir R Aref; Jean-Pierre Eliane; Marc R Hammond; Hans Vitzthum; Shauna M Blackmon; Bo Li; Vancheswaran Gopalakrishnan; Sangeetha M Reddy; Zachary A Cooper; Cloud P Paweletz; David A Barbie; Anat Stemmer-Rachamimov; Keith T Flaherty; Jennifer A Wargo; Genevieve M Boland; Ryan J Sullivan; Gad Getz; Nir Hacohen
Journal:  Cell       Date:  2018-11-01       Impact factor: 41.582

10.  Adenosine generation catalyzed by CD39 and CD73 expressed on regulatory T cells mediates immune suppression.

Authors:  Silvia Deaglio; Karen M Dwyer; Wenda Gao; David Friedman; Anny Usheva; Anna Erat; Jiang-Fan Chen; Keiichii Enjyoji; Joel Linden; Mohamed Oukka; Vijay K Kuchroo; Terry B Strom; Simon C Robson
Journal:  J Exp Med       Date:  2007-05-14       Impact factor: 14.307

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  64 in total

Review 1.  Understanding Normal and Malignant Human Hematopoiesis Using Next-Generation Humanized Mice.

Authors:  Yoriko Saito; Leonard D Shultz; Fumihiko Ishikawa
Journal:  Trends Immunol       Date:  2020-07-03       Impact factor: 16.687

Review 2.  Tumor microenvironmental influences on dendritic cell and T cell function: A focus on clinically relevant immunologic and metabolic checkpoints.

Authors:  Kristian M Hargadon
Journal:  Clin Transl Med       Date:  2020-01

Review 3.  Targeting CD39 in cancer.

Authors:  Achim K Moesta; Xian-Yang Li; Mark J Smyth
Journal:  Nat Rev Immunol       Date:  2020-07-29       Impact factor: 53.106

Review 4.  Role of inflammasome activation in tumor immunity triggered by immune checkpoint blockers.

Authors:  M Segovia; S Russo; M R Girotti; G A Rabinovich; M Hill
Journal:  Clin Exp Immunol       Date:  2020-05       Impact factor: 4.330

Review 5.  Hypoxia-inducible factors and innate immunity in liver cancer.

Authors:  Vincent Wai-Hin Yuen; Carmen Chak-Lui Wong
Journal:  J Clin Invest       Date:  2020-10-01       Impact factor: 14.808

6.  P2X7 Receptor Activity Limits Accumulation of T Cells within Tumors.

Authors:  Andrea Romagnani; Elsa Rottoli; Emilia Maria Cristina Mazza; Tanja Rezzonico-Jost; Benedetta De Ponte Conti; Michele Proietti; Michela Perotti; Elisa Civanelli; Lisa Perruzza; Alberico L Catapano; Andrea Baragetti; Elena Tenedini; Enrico Tagliafico; Simonetta Falzoni; Francesco Di Virgilio; Giuseppe Danilo Norata; Silvio Bicciato; Fabio Grassi
Journal:  Cancer Res       Date:  2020-07-22       Impact factor: 12.701

Review 7.  The adenosine pathway in immuno-oncology.

Authors:  Bertrand Allard; David Allard; Laurence Buisseret; John Stagg
Journal:  Nat Rev Clin Oncol       Date:  2020-06-08       Impact factor: 66.675

Review 8.  Overcoming immunotherapeutic resistance by targeting the cancer inflammation cycle.

Authors:  Max M Wattenberg; Gregory L Beatty
Journal:  Semin Cancer Biol       Date:  2020-01-15       Impact factor: 15.707

Review 9.  Targeting CD73 to augment cancer immunotherapy.

Authors:  Meejeon Roh; Derek A Wainwright; Jennifer D Wu; Yong Wan; Bin Zhang
Journal:  Curr Opin Pharmacol       Date:  2020-08-07       Impact factor: 5.547

Review 10.  To inhibit or to boost the ATP/P2RX7 pathway to fight cancer-that is the question.

Authors:  Serena Janho Dit Hreich; Jonathan Benzaquen; Paul Hofman; Valérie Vouret-Craviari
Journal:  Purinergic Signal       Date:  2021-08-04       Impact factor: 3.765

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