PGC1 promotes cisplatin resistance in human ovarian carcinoma cells through upregulation of mitochondrial biogenesis

被引:22
作者
Shen, Luyan [1 ]
Sun, Boyang [2 ]
Sheng, Jiyao [3 ]
Yu, Sihang [1 ]
Li, Yanqing [1 ]
Xu, Huadan [1 ]
Su, Jing [1 ]
Sun, Liankun [1 ]
机构
[1] Jilin Univ, Coll Basic Med Sci, Dept Pathophysiol, 126 Xinmin St, Changchun 130021, Jilin, Peoples R China
[2] Yanbian Univ, Basic Coll Med, Dept Biochem & Mol Biol, Yanbian Korean Autonomou 133002, Jilin, Peoples R China
[3] Jilin Univ, Hosp 2, Dept Hepatobiliary & Pancreas Surg, Changchun 130041, Jilin, Peoples R China
基金
中国国家自然科学基金;
关键词
peroxisome proliferator-activated receptor-coactivator 1; mitochondrial biogenesis; oxidative phosphorylation; cisplatin resistance; ovarian cancer; NUCLEAR RESPIRATORY FACTORS; OXIDATIVE-PHOSPHORYLATION; GENE-EXPRESSION; CANCER-CELLS; METABOLISM; PGC1-ALPHA; FAMILY; COACTIVATORS; PGC-1-ALPHA; MECHANISMS;
D O I
10.3892/ijo.2018.4401
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The induction of lesions in nuclear and mitochondrial DNA by cisplatin is only a small component of its cytostatic/cytotoxic activity. The signaling pathway network in the nucleus and cytoplasm may contribute to chemotherapeutic resistance. Peroxisome proliferator-activated receptor-coactivator 1 (PGC1)-mediated mitochondrial biogenesis regulates mitochondrial structural and the functional adaptive response against chemotherapeutic stress, and may be a therapeutic target. However, this regulatory network is complex and depends upon tumor types and environments, which require further investigation. Our previous study found that cisplatin-resistant ovarian epithelial carcinoma was more dependent on mitochondrial aerobic oxidation to support their growth, suggesting the association between mitochondrial function and chemotherapeutic resistance. In the present study, it was demonstrated that the expression of PGC1 and level of mitochondrial biogenesis were higher in cisplatin-resistant SKOV3/DDP cells compared with cisplatin-sensitive SKOV3 cells. Furthermore, SKOV3/DDP cells upregulated the expression of PGC1 and maintained mitochondrial structural and functional integrity through mitochondrial biogenesis under cisplatin stress. Inhibiting the expression of PGC1 using short hairpin RNA led to the downregulation of mitochondrial biogenesis and high levels of apoptosis in the SKOV3/DDP cells, and cisplatin resistance was reversed in the PGC1-deficient SKOV3/DDP cells. Collectively, the present study provided evidence that cisplatin stimulated the expression of PGC1 and the upregulation of mitochondrial biogenesis through PGC1, promoting cell viability and inhibiting apoptosis in response to cisplatin treatment, thus triggering cisplatin resistance in ovarian cancer cells.
引用
收藏
页码:404 / 416
页数:13
相关论文
共 50 条
  • [1] Ovarian cancer: Strategies for overcoming resistance to chemotherapy
    Agarwal, R
    Kaye, SB
    [J]. NATURE REVIEWS CANCER, 2003, 3 (07) : 502 - 516
  • [2] PGC1α Promotes Tumor Growth by Inducing Gene Expression Programs Supporting Lipogenesis
    Bhalla, Kavita
    Hwang, Bor Jang
    Dewi, Ruby E.
    Ou, Lihui
    Twaddel, William
    Fang, Hong-Bin
    Vafai, Scott B.
    Vazquez, Francesca
    Puigserver, Pere
    Boros, Laszlo
    Girnun, Geoffrey D.
    [J]. CANCER RESEARCH, 2011, 71 (21) : 6888 - 6898
  • [3] A common set of gene regulatory networks links metabolism and growth inhibition
    Cam, H
    Balciunaite, E
    Blais, A
    Spektor, A
    Scarpulla, RC
    Young, R
    Kluger, Y
    Dynlacht, BD
    [J]. MOLECULAR CELL, 2004, 16 (03) : 399 - 411
  • [4] Cisplatin in cancer therapy: Molecular mechanisms of action
    Dasari, Shaloam
    Tchounwou, Paul Bernard
    [J]. EUROPEAN JOURNAL OF PHARMACOLOGY, 2014, 740 : 364 - 378
  • [5] Ataxia-telangiectasia mutated kinase regulates ribonucleotide reductase and mitochondrial homeostasis
    Eaton, Jana S.
    Lin, Z. Ping
    Sartorelli, Alan C.
    Bonawitz, Nicholas D.
    Shadel, Gerald S.
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2007, 117 (09) : 2723 - 2734
  • [6] Regulation of PGC-1α, a nodal regulator of mitochondrial biogenesis
    Fernandez-Marcos, Pablo J.
    Auwerx, Johan
    [J]. AMERICAN JOURNAL OF CLINICAL NUTRITION, 2011, 93 (04) : 884S - 890S
  • [7] Systems biology of cisplatin resistance: past, present and future
    Galluzzi, L.
    Vitale, I.
    Michels, J.
    Brenner, C.
    Szabadkai, G.
    Harel-Bellan, A.
    Castedo, M.
    Kroemer, G.
    [J]. CELL DEATH & DISEASE, 2014, 5 : e1257 - e1257
  • [8] Mitochondrial transcription factor A contributes to cisplatin resistance in patients with estrogen receptor-positive breast cancer
    Gao, Wei
    Wu, Mei-Hong
    Wang, Ning
    Ying, Ming-Zheng
    Zhang, Ying-Yi
    Hua, Jing
    Chuan, Liu
    Wang, Ya-Jie
    [J]. MOLECULAR MEDICINE REPORTS, 2016, 14 (06) : 5304 - 5310
  • [9] The diverse role of the PPARγ coactivator 1 family of transcriptional coactivators in cancer
    Girnun, Geoffrey D.
    [J]. SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2012, 23 (04) : 381 - 388
  • [10] Control of mitochondrial transcription specificity factors (TFB1M and TFB2M) by nuclear respiratory factors (NRF-1 and NRF-2) and PGC-1 family coactivators
    Gleyzer, N
    Vercauteren, K
    Scarpulla, RC
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2005, 25 (04) : 1354 - 1366