Loss of Anti-Tumor Efficacy by Polyamine Blocking Therapy in GCN2 Null Mice

被引:2
作者
Alexander, Eric T. [1 ]
Fahey, Erin [1 ]
Phanstiel, Otto [2 ]
Gilmour, Susan K. [1 ]
机构
[1] Lankenau Inst Med Res, 100 Lancaster Ave, Wynnewood, PA 19096 USA
[2] Univ Cent Florida, Coll Med, Dept Med Educ, Biomol Res Annex, 12722 Res Pkwy, Orlando, FL 32826 USA
关键词
polyamine blocking therapy; GCN2; alpha-difluoromethylornithine; transport inhibitor; macrophages; myeloid derived suppressor cells; SUPPRESSOR-CELLS; ARGINASE-I; INDUCTION; CANCER; CHEMOPREVENTION; SPERMIDINE; AUTOPHAGY; TRANSPORT; SURVIVAL; TARGET;
D O I
10.3390/biomedicines11102703
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
GCN2 is one of the main sensors of amino acid starvation stress, and its activation in the stressful tumor microenvironment plays a crucial role in tumor survival and progression. We hypothesized that elevated polyamine biosynthesis and subsequent depletion of precursor arginine activates GCN2, thus rewiring metabolism to support tumor cell survival and drive myeloid immunosuppressive function. We sought to determine if the anti-tumor efficacy of a polyamine blocking therapy (PBT) may be mediated by its effect on GCN2. Unlike wild-type mice, PBT treatment in GCN2 knockout mice bearing syngeneic B16.F10 or EG7 tumors resulted in no tumor growth inhibition and no changes in the profile of infiltrating tumor immune cells. Studies with murine bone marrow cell cultures showed that increased polyamine metabolism and subsequent arginine depletion and GCN2 activation played an essential role in the generation and cytoprotective autophagy of myeloid derived suppressor cells (MDSCs) as well as the M2 polarization and survival of macrophages, all of which were inhibited by PBT. In all, our data suggest that polyamine-dependent GCN2 signaling in stromal cells promotes tumor growth and the development of the immunosuppressive tumor microenvironment, and that the PBT anti-tumor effect is mediated, at least in part, by targeting GCN2.
引用
收藏
页数:12
相关论文
共 44 条
[1]   The structural basis of translational control by eIF2 phosphorylation [J].
Adomavicius, Tomas ;
Guaita, Margherita ;
Zhou, Yu ;
Jennings, Martin D. ;
Latif, Zakia ;
Roseman, Alan M. ;
Pavitt, Graham D. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[2]   Polyamine Blocking Therapy Decreases Survival of Tumor-Infiltrating Immunosuppressive Myeloid Cells and Enhances the Antitumor Efficacy of PD-1 Blockade [J].
Alexander, Eric T. ;
Mariner, Kelsey ;
Donnelly, Julia ;
Phanstiel, Otto ;
Gilmour, Susan K. .
MOLECULAR CANCER THERAPEUTICS, 2020, 19 (10) :2012-2022
[3]   A novel polyamine blockade therapy activates an anti-tumor immune response [J].
Alexander, Eric T. ;
Minton, Allyson ;
Peters, Molly C. ;
Phanstiel, Otto ;
Gilmour, Susan K. .
ONCOTARGET, 2017, 8 (48) :84140-84152
[4]  
BACHRACH U, 1981, CANCER RES, V41, P1205
[5]   THE ORNITHINE DECARBOXYLASE GENE IS A TRANSCRIPTIONAL TARGET OF C-MYC [J].
BELLOFERNANDEZ, C ;
PACKHAM, G ;
CLEVELAND, JL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (16) :7804-7808
[6]   Systemic treatment with the antidiabetic drug metformin selectively impairs p53-deficient tumor cell growth [J].
Buzzai, Monica ;
Jones, Russell G. ;
Amaravadi, Ravi K. ;
Lum, Julian J. ;
DeBerardinis, Ralph J. ;
Zhao, Fangping ;
Viollet, Benoit ;
Thompson, Craig B. .
CANCER RESEARCH, 2007, 67 (14) :6745-6752
[7]   Polyamine metabolism and cancer: treatments, challenges and opportunities [J].
Casero, Robert A., Jr. ;
Stewart, Tracy Murray ;
Pegg, Anthony E. .
NATURE REVIEWS CANCER, 2018, 18 (11) :681-695
[8]   Polyamines metabolism and breast cancer: state of the art and perspectives [J].
Cervelli, Manuela ;
Pietropaoli, Stefano ;
Signore, Fabrizio ;
Amendola, Roberto ;
Mariottini, Paolo .
BREAST CANCER RESEARCH AND TREATMENT, 2014, 148 (02) :233-248
[9]   MODULATION OF POLYAMINE BIOSYNTHESIS AND TRANSPORT BY ONCOGENE TRANSFECTION [J].
CHANG, BK ;
LIBBY, PR ;
BERGERON, RJ ;
PORTER, CW .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1988, 157 (01) :264-270
[10]   CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway [J].
Chen, Meng-Shian ;
Wang, Sheng-Fan ;
Hsu, Chih-Yi ;
Yin, Pen-Hui ;
Yeh, Tien-Shun ;
Lee, Hsin-Chen ;
Tseng, Ling-Ming .
ONCOTARGET, 2017, 8 (70) :114588-114602