Inhibition of mitochondrial translation overcomes venetoclax resistance in AML through activation of the integrated stress response

被引:131
|
作者
Sharon, David [1 ]
Cathelin, Severine [1 ]
Mirali, Sara [1 ]
Di Trani, Justin M. [2 ]
Yanofsky, David J. [2 ,3 ]
Keon, Kristine A. [2 ,3 ]
Rubinstein, John L. [2 ,3 ]
Schimmer, Aaron D. [1 ,3 ]
Ketela, Troy [1 ]
Chan, Steven M. [1 ,3 ]
机构
[1] Princess Margaret Canc Ctr, Toronto, ON M5G 1L7, Canada
[2] Hosp Sick Children, Mol Med Program, Toronto, ON M5G 0A4, Canada
[3] Univ Toronto, Dept Med Biophys, Toronto, ON M5G 1L7, Canada
基金
加拿大健康研究院;
关键词
ACUTE MYELOID-LEUKEMIA; ANTI-APOPTOTIC MCL-1; COMPLEX-I; BCL-2; INHIBITION; STEM-CELLS; BINDING; DEATH; PHARMACOKINETICS; PHOSPHORYLATION; NEURONS;
D O I
10.1126/scitranslmed.aax2863
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Venetoclax is a specific B cell lymphoma 2 (BCL-2) inhibitor with promising activity against acute myeloid leukemia (AML), but its clinical efficacy as a single agent or in combination with hypomethylating agents (HMAs), such as azacitidine, is hampered by intrinsic and acquired resistance. Here, we performed a genome-wide CRISPR knockout screen and found that inactivation of genes involved in mitochondrial translation restored sensitivity to venetoclax in resistant AML cells. Pharmacologic inhibition of mitochondrial protein synthesis with antibiotics that target the ribosome, including tedizolid and doxycycline, effectively overcame venetoclax resistance. Mechanistic studies showed that both tedizolid and venetoclax suppressed mitochondrial respiration, with the latter demonstrating inhibitory activity against complex I [nicotinamide adenine dinucleotide plus hydrogen (NADH) dehydrogenase] of the electron transport chain (ETC). The drugs cooperated to activate a heightened integrated stress response (ISR), which, in turn, suppressed glycolytic capacity, resulting in adenosine triphosphate (ATP) depletion and subsequent cell death. Combination treatment with tedizolid and venetoclax was superior to either agent alone in reducing leukemic burden in mice engrafted with treatment-resistant human AML. The addition of tedizolid to azacitidine and venetoclax further enhanced the killing of resistant AML cells in vitro and in vivo. Our findings demonstrate that inhibition of mitochondrial translation is an effective approach to overcoming venetoclax resistance and provide a rationale for combining tedizolid, azacitidine, and venetoclax as a triplet therapy for AML.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Targeting Mitochondrial Translation Overcomes Venetoclax Resistance in Acute Myeloid Leukemia (AML) through Activation of the Integrated Stress Response
    Sharon, David
    Cathelin, Severine
    Subedi, Amit
    Williams, Ryan
    Benicio, Mariana
    Ketela, Troy
    Chan, Steven M.
    BLOOD, 2017, 130
  • [2] ERK1/2 inhibition overcomes resistance to venetoclax in AML by altering mitochondrial metabolism
    Sharma, Priyanka
    Ostermann, Lauren
    Piya, Sujan
    Baran, Natalia
    Tyagi, Anudishi
    Hindley, Christopher
    Dao, Kim-Hien
    Sims, Martin
    Battula, V. Lokesh
    Andreeff, Michael
    Borthakur, Gautam
    CANCER RESEARCH, 2023, 83 (07)
  • [3] ERK1/2 Inhibition Overcomes Resistance to Venetoclax in AML By Inhibiting Drp1 Dependent Mitochondrial Fission
    Sharma, Priyanka
    Ostermann, Lauren B.
    Piya, Sujan
    Ke, Baozhen
    Baran, Natalia
    Tyagi, Anudishi
    Muftuoglu, Muharrem
    Basyal, Mahesh
    Zhang, Qi
    Munck, Joanne
    Dao, Kim-Hien
    Sims, Martin
    Carter, Bing Z.
    Battula, Venkata Lokesh
    Andreeff, Michael
    Borthakur, Gautam
    BLOOD, 2023, 142
  • [4] Mitochondrial translation inhibition triggers ATF4 activation, leading to integrated stress response but not to mitochondrial unfolded protein response
    Sasaki, Katsuhiko
    Uchiumi, Takeshi
    Toshima, Takahiro
    Yagi, Mikako
    Do, Yura
    Hirai, Haruka
    Igami, Ko
    Gotoh, Kazuhito
    Kang, Dongchon
    BIOSCIENCE REPORTS, 2020, 40
  • [5] ERK1/2 Inhibition Overcomes Resistance to Venetoclax in AML By Altering Drp1-Dependent Mitochondrial Fission and Metabolism
    Sharma, Priyanka
    Piya, Sujan
    Baran, Natalia
    Zal, Anna
    Hindley, Christopher J.
    Dao, Kim-Hien
    Sims, Martin
    Zal, Tomasz
    Ruvolo, Vivian
    Andreeff, Michael
    Borthakur, Gautam
    BLOOD, 2022, 140 : 8789 - 8790
  • [6] Disruption of mitochondrial dynamics increases stress resistance through activation of multiple stress response pathways
    Machiela, Emily
    Liontis, Thomas
    Dues, Dylan J.
    Rudich, Paige D.
    Traa, Annika
    Wyman, Leslie
    Kaufman, Corah
    Cooper, Jason F.
    Lew, Leira
    Nadarajan, Saravanapriah
    Senchuk, Megan M.
    Van Raamsdonk, Jeremy M.
    FASEB JOURNAL, 2020, 34 (06): : 8475 - 8492
  • [7] The Mitochondrial Life Cycle Determines β-Cell Maturity through Activation of the Integrated Stress Response
    Pearson, Gemma
    Lawlor, Nathan
    Zhu, Jie
    Walker, Emily M.
    Reck, Emma C.
    Stitzel, Michael L.
    Soleimanpour, Scott
    DIABETES, 2021, 70
  • [8] Brusatol overcomes chemoresistance through inhibition of protein translation
    Harder, Bryan
    Tian, Wang
    La Clair, James J.
    Tan, Aik-Choon
    Ooi, Aikseng
    Chapman, Eli
    Zhang, Donna D.
    MOLECULAR CARCINOGENESIS, 2017, 56 (05) : 1493 - 1500
  • [9] Integrated Stress Response Couples Mitochondrial Protein Translation With Oxidative Stress Control
    Zhang, Guangyu
    Wang, Xiaoding
    Li, Chao
    Li, Qinfeng
    An, Yu A.
    Luo, Xiang
    Deng, Yingfeng
    Gillette, Thomas G.
    Scherer, Philipp E.
    Wang, Zhao, V
    CIRCULATION, 2021, 144 (18) : 1500 - 1515
  • [10] ERK1/2 Inhibition Overcomes Resistance in Acute Myeloid Leukemia (AML) and Alters Mitochondrial Dynamics
    Sharma, Priyanka
    Piya, Sujan
    Ma, Huaxian
    Baran, Natalia
    Zal, Malgorzata Anna
    Hindley, Christopher J.
    Dao, Kim-Hien
    Sims, Martin
    Zal, Tomasz
    Ruvolo, Vivian
    Andreeff, Michael
    Borthakur, Gautam
    BLOOD, 2021, 138