Repression of the stress granule protein G3BP2 inhibits immune checkpoint molecule PD-L1

被引:18
作者
Zhang, Yanhong [1 ,2 ,3 ]
Yue, Changli [4 ]
Krichevsky, Anna M. [3 ]
Garkavtsev, Igor [1 ,2 ]
机构
[1] Massachusetts Gen Hosp, Dept Radiat Oncol, Boston, MA 02114 USA
[2] Harvard Med Sch, Boston, MA 02115 USA
[3] Brigham & Womens Hosp, Ann Romney Ctr Neurol Dis, Initiat RNA Med, Dept Neurol, 75 Francis St, Boston, MA 02115 USA
[4] Capital Med Univ, Beijing Tongren Hosp, Dept Pathol, Beijing, Peoples R China
关键词
a small molecule C108; immunosuppression; PD-L1; stress granule-associated protein G3BP2; stress granules; TOXICITY PROFILE; HYPOXIA; IMMUNOTHERAPY; BLOCKADE; TUMORS;
D O I
10.1002/1878-0261.12915
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Mounting evidence suggests that cancer stemness and immunosuppression are related, but the underlying mechanisms behind these are not clear. We previously reported that the stress granule-associated protein G3BP2 is involved in the regulation of tumor-initiating (stem) cells. In this study, we show that this protein also upregulates the immune checkpoint molecule PD-L1 under conditions of stress in breast and glioblastoma cancer cells, revealing a previously unknown connection between stemness programs, stress responses, and immune checkpoint control. We also identified a significant correlation between G3BP2 and PD-L1 co-expression in tumor tissues from cancer patients. To assess the targetability of G3BP2, we employed a small molecule (C108) that binds G3BP2 and interferes with the stress response. Tumors treated with C108 had increased CD8 T-cell proliferation and infiltration. Moreover, treatment of breast tumor-bearing mice with C108 resulted in a significant survival benefit and long-term cures. Cancer cells treated with C108 or cancer cells with genetically repressed G3BP2 had decreased PD-L1 expression due to enhanced mRNA degradation. Our study provides a compelling mechanism linking stress granule formation and immune checkpoint program of cancer, suggesting this link may provide new opportunities for improving anticancer immunotherapy.
引用
收藏
页码:558 / 571
页数:14
相关论文
共 26 条
[1]   Stress-specific differences in assembly and composition of stress granules and related foci [J].
Aulas, Anais ;
Fay, Marta M. ;
Lyons, Shawn M. ;
Achorn, Christopher A. ;
Kedersha, Nancy ;
Anderson, Paul ;
Ivanov, Pavel .
JOURNAL OF CELL SCIENCE, 2017, 130 (05) :927-937
[2]   Checkpoint Inhibitors and Their Application in Breast Cancer [J].
Bedognetti, Davide ;
Maccalli, Cristina ;
Al Bader, Salha B. J. ;
Marincola, Francesco M. ;
Seliger, Barbara .
BREAST CARE, 2016, 11 (02) :108-115
[3]   Eukaryotic Stress Granules: The Ins and Outs of Translation [J].
Buchan, J. Ross ;
Parker, Roy .
MOLECULAR CELL, 2009, 36 (06) :932-941
[4]   MYC regulates the antitumor immune response through CD47 and PD-L1 [J].
Casey, Stephanie C. ;
Tong, Ling ;
Li, Yulin ;
Do, Rachel ;
Walz, Susanne ;
Fitzgerald, Kelly N. ;
Gouw, Arvin M. ;
Baylot, Virginie ;
Guetgemann, Ines ;
Eilers, Martin ;
Felsher, Dean W. .
SCIENCE, 2016, 352 (6282) :227-231
[5]   Translational control of tumor immune escape via the eIF4F-STAT1-PD-L1 axis in melanoma [J].
Cerezo, Michael ;
Guemiri, Ramdane ;
Druillennec, Sabine ;
Girault, Isabelle ;
Malka-Mahieu, Helene ;
Shen, Shensi ;
Allard, Delphine ;
Martineau, Sylvain ;
Welsch, Caroline ;
Agoussi, Sandrine ;
Estrada, Charlene ;
Adam, Julien ;
Libenciuc, Cristina ;
Routier, Emilie ;
Roy, Severine ;
Desaubry, Laurent ;
Eggermont, Alexander M. ;
Sonenberg, Nahum ;
Scoazec, Jean Yves ;
Eychene, Alain ;
Vagner, Stephan ;
Robert, Caroline .
NATURE MEDICINE, 2018, 24 (12) :1877-+
[6]   Relationships between Stress Granules, Oxidative Stress, and Neurodegenerative Diseases [J].
Chen, Lihua ;
Liu, Beidong .
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2017, 2017
[7]   Micro-Environmental Mechanical Stress Controls Tumor Spheroid Size and Morphology by Suppressing Proliferation and Inducing Apoptosis in Cancer Cells [J].
Cheng, Gang ;
Tse, Janet ;
Jain, Rakesh K. ;
Munn, Lance L. .
PLOS ONE, 2009, 4 (02)
[8]   New toxicity profile for novel immunotherapy agents: focus on immune-checkpoint inhibitors [J].
Ciccarese, C. ;
Alfieri, S. ;
Santoni, M. ;
Santini, D. ;
Brunelli, M. ;
Bergamini, C. ;
Licitra, L. ;
Montironi, R. ;
Tortora, G. ;
Massari, F. .
EXPERT OPINION ON DRUG METABOLISM & TOXICOLOGY, 2016, 12 (01) :57-75
[9]   Oncogenic RAS Signaling Promotes Tumor Immunoresistance by Stabilizing PD-L1 mRNA [J].
Coelho, Matthew A. ;
Trecesson, Sophie de Carne ;
Rana, Sareena ;
Zecchin, Davide ;
Moore, Christopher ;
Molina-Arcas, Miriam ;
East, Philip ;
Spencer-Dene, Bradley ;
Nye, Emma ;
Barnouin, Karin ;
Snijders, Ambrosius P. ;
Lai, Wi S. ;
Blackshear, Perry J. ;
Downward, Julian .
IMMUNITY, 2017, 47 (06) :1083-+
[10]   Epithelial-to-Mesenchymal Transition Contributes to Immunosuppression in Breast Carcinomas [J].
Dongre, Anushka ;
Rashidian, Mohammad ;
Reinhardt, Ferenc ;
Bagnato, Aaron ;
Keckesova, Zuzana ;
Ploegh, Hidde L. ;
Weinberg, Robert A. .
CANCER RESEARCH, 2017, 77 (15) :3982-3989