PERK/NRF2 and autophagy form a resistance mechanism against G9a inhibition in leukemia stem cells

被引:45
作者
Jang, Ji Eun [1 ]
Eom, Ju-In [2 ]
Jeung, Hoi-Kyung [2 ]
Chung, Haerim [1 ]
Kim, Yu Ri [1 ]
Kim, Jin Seok [1 ]
Cheong, June-Won [1 ]
Min, Yoo Hong [1 ]
机构
[1] Yonsei Univ, Dept Internal Med, Coll Med, Seoul, South Korea
[2] Yonsei Univ, Avison Biomed Res Ctr, Coll Med, Seoul, South Korea
基金
新加坡国家研究基金会;
关键词
Leukemia stem cells; G9a; PERK; NRF2; Autophagy; Resistance; HISTONE METHYLTRANSFERASE G9A; ENDOPLASMIC-RETICULUM STRESS; MYELOID-LEUKEMIA; REDOX HOMEOSTASIS; BREAST-CANCER; APOPTOSIS; INDUCTION; SURVIVAL; HYPOXIA; METASTASIS;
D O I
10.1186/s13046-020-01565-3
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background The histone methyltransferase G9a has recently been identified as a potential target for epigenetic therapy of acute myeloid leukemia (AML). However, the effect of G9a inhibition on leukemia stem cells (LSCs), which are responsible for AML drug resistance and recurrence, is unclear. In this study, we investigated the underlying mechanisms of the LSC resistance to G9a inhibition. Methods We evaluated the effects of G9a inhibition on the unfolded protein response and autophagy in AML and LSC-like cell lines and in primary CD34(+)CD38(-) leukemic blasts from patients with AML and investigated the underlying mechanisms. The effects of treatment on cells were evaluated by flow cytometry, western blotting, confocal microscopy, reactive oxygen species (ROS) production assay. Results The G9a inhibitor BIX-01294 effectively induced apoptosis in AML cell lines; however, the effect was limited in KG1 LSC-like cells. BIX-01294 treatment or siRNA-mediated G9a knockdown led to the activation of the PERK/NRF2 pathway and HO-1 upregulation in KG1 cells. Phosphorylation of p38 and intracellular generation of reactive oxygen species (ROS) were suppressed. Pharmacological or siRNA-mediated inhibition of the PERK/NRF2 pathway synergistically enhanced BIX-01294-induced apoptosis, with suppressed HO-1 expression, increased p38 phosphorylation, and elevated ROS generation, indicating that activated PERK/NRF2 signaling suppressed ROS-induced apoptosis in KG1 cells. By contrast, cotreatment of normal hematopoietic stem cells with BIX-01294 and a PERK inhibitor had no significant proapoptotic effect. Additionally, G9a inhibition induced autophagy flux in KG1 cells, while autophagy inhibitors significantly increased the BIX-01294-induced apoptosis. This prosurvival autophagy was not abrogated by PERK/NRF2 inhibition. Conclusions PERK/NRF2 signaling plays a key role in protecting LSCs against ROS-induced apoptosis, thus conferring resistance to G9a inhibitors. Treatment with PERK/NRF2 or autophagy inhibitors could overcome resistance to G9a inhibition and eliminate LSCs, suggesting the potential clinical utility of these unique targeted therapies against AML.
引用
收藏
页数:14
相关论文
共 52 条
[41]   Endoplasmic reticulum stress and autophagy as targets for cancer therapy [J].
Schonthal, Axel H. .
CANCER LETTERS, 2009, 275 (02) :163-169
[42]   UPR, autophagy, and mitochondria crosstalk underlies the ER stress response [J].
Senft, Daniela ;
Ronai, Ze'ev A. .
TRENDS IN BIOCHEMICAL SCIENCES, 2015, 40 (03) :141-148
[43]   Resistance of leukemic stem-like cells in AML cell line KG1a to natural killer cell-mediated cytotoxicity [J].
She, Miaorong ;
Niu, Xinqing ;
Chen, Xilin ;
Li, Jinggao ;
Zhou, Maohua ;
He, Yanjie ;
Le, Yi ;
Guo, Kunyuan .
CANCER LETTERS, 2012, 318 (02) :173-179
[44]   Autophagy and chemotherapy resistance: a promising therapeutic target for cancer treatment [J].
Sui, X. ;
Chen, R. ;
Wang, Z. ;
Huang, Z. ;
Kong, N. ;
Zhang, M. ;
Han, W. ;
Lou, F. ;
Yang, J. ;
Zhang, Q. ;
Wang, X. ;
He, C. ;
Pan, H. .
CELL DEATH & DISEASE, 2013, 4 :e838-e838
[45]   Oxidative stress and hypoxia in normal and leukemic stem cells [J].
Testa, Ugo ;
Labbaye, Catherine ;
Castelli, Gennana ;
Pelosi, Elvira .
EXPERIMENTAL HEMATOLOGY, 2016, 44 (07) :540-560
[46]   The 2008 revision of the World Health Organization (WHO) classification of myeloid neoplasms and acute leukemia: rationale and important changes [J].
Vardiman, James W. ;
Thiele, Juergen ;
Arber, Daniel A. ;
Brunning, Richard D. ;
Borowitz, Michael J. ;
Porwit, Anna ;
Harris, Nancy Lee ;
Le Beau, Michelle M. ;
Hellstrom-Lindberg, Eva ;
Tefferi, Ayalew ;
Bloomfield, Clara D. .
BLOOD, 2009, 114 (05) :937-951
[47]   Epigenetics and Cancer Stem Cells: Unleashing, Hijacking, and Restricting Cellular Plasticity [J].
Wainwright, Elanor N. ;
Scaffidi, Paola .
TRENDS IN CANCER, 2017, 3 (05) :372-386
[48]   Clonogenic assays measure leukemia stem cell killing not detectable by chromium release and flow cytometric cytotoxicity assays [J].
Williams, Brent A. ;
Wang, Xing-Hua ;
Keating, Armand .
CYTOTHERAPY, 2010, 12 (07) :951-960
[49]   Pharmacological and transcriptional inhibition of the G9a histone methyltransferase suppresses proliferation and modulates redox homeostasis in human microvascular endothelial cells [J].
Wojtala, Martyna ;
Macierzynska-Piotrowska, Ewa ;
Rybaczek, Dorota ;
Pirola, Luciano ;
Balcerczyk, Aneta .
PHARMACOLOGICAL RESEARCH, 2018, 128 :252-263
[50]   Exome sequencing identifies somatic mutations of DNA methyltransferase gene DNMT3A in acute monocytic leukemia [J].
Yan, Xiao-Jing ;
Xu, Jie ;
Gu, Zhao-Hui ;
Pan, Chun-Ming ;
Lu, Gang ;
Shen, Yang ;
Shi, Jing-Yi ;
Zhu, Yong-Mei ;
Tang, Lin ;
Zhang, Xiao-Wei ;
Liang, Wen-Xue ;
Mi, Jian-Qing ;
Song, Huai-Dong ;
Li, Ke-Qin ;
Chen, Zhu ;
Chen, Sai-Juan .
NATURE GENETICS, 2011, 43 (04) :309-U51