Knockdown of prostaglandin reductase 1 (PTGR1) suppresses prostate cancer cell proliferation by inducing cell cycle arrest and apoptosis

被引:27
作者
Xue, Li [1 ]
Zhu, Zhen [1 ]
Wang, Ziming [1 ]
Li, Hecheng [1 ]
Zhang, Peng [1 ]
Wang, Zhenlong [1 ]
Chen, Qi [1 ]
Chen, Haiwen [1 ]
Chong, Tie [1 ]
机构
[1] Xi An Jiao Tong Univ, Dept Urol, Affiliated Hosp 2, Xian 710004, Shannxi, Peoples R China
关键词
PTGR1; prostate cancer; proliferation; apoptosis; cell cycle; KINASE;
D O I
10.5582/bst.2016.01045
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Chemoresistance is a serious problem for the treatment of androgen-independent prostate cancer (PC). The underlying molecular mechanisms by which androgen-independent PC cells acquire the capacity to proliferate remain largely unclear. The aim of this study was to investigate the biological role of prostaglandin reductase 1 (PTGR1) in prostate cancer. Data from the Oncomine database showed that PTGR1 is commonly upregulated in PC tissue in comparison to corresponding normal controls. Two PTGR1-specific short hairpin RNA (shRNA) sequences were used to block the expression of PTGR1 via a lentivirus-mediated system in the androgen-independent PC cell lines DU145 and PC 3. Functional analysis revealed that knockdown of PTGR1 significantly inhibited proliferation and colony formation by PC cells. The inhibition of cell proliferation was related to arrest of the cell cycle in the G0/G1 phase and increased apoptosis in response to PTGR1 knockdown as indicated by flow cytometry. PTGR1 silencing was found to mechanically enhance the expression of p21, caspase 3, and cleaved PARP and to decrease the level of cyclin D1. In conclusion, PTGR1 plays an essential role in PC cells and may be a potential therapeutic target for PC.
引用
收藏
页码:133 / 139
页数:7
相关论文
共 27 条
[1]   Management of advanced prostate cancer after first-line chemotherapy [J].
Berthold, DR ;
Sternberg, CN ;
Tannock, IF .
JOURNAL OF CLINICAL ONCOLOGY, 2005, 23 (32) :8247-8252
[2]   Imaging and evaluation of patients with high-risk prostate cancer [J].
Bjurlin, Marc A. ;
Rosenkrantz, Andrew B. ;
Beltran, Luis S. ;
Raad, Roy A. ;
Taneja, Samir S. .
NATURE REVIEWS UROLOGY, 2015, 12 (11) :617-628
[3]   Assessment of Apoptosis by Immunohistochemistry to Active Caspase-3, Active Caspase-7, or Cleaved PARP in Monolayer Cells and Spheroid and Subcutaneous Xenografts of Human Carcinoma [J].
Bressenot, Aude ;
Marchal, Sophie ;
Bezdetnaya, Lina ;
Garrier, Julie ;
Guillemin, Francois ;
Plenat, Francois .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 2009, 57 (04) :289-300
[4]   Unique formosan mushroom Antrodia camphorata differentially inhibits androgen-responsive LNCaP and -independent PC-3 prostate cancer cells [J].
Chen, Kuan-Chou ;
Peng, Chiung-Chi ;
Peng, Robert Y. ;
Su, Ching-Hua ;
Chiang, Han-Sun ;
Yan, Jr-Hung ;
Hsieh-Li, Hsiu Mei .
NUTRITION AND CANCER-AN INTERNATIONAL JOURNAL, 2007, 57 (01) :111-121
[5]  
Decker Patrice, 2002, Current Pharmaceutical Biotechnology, V3, P275, DOI 10.2174/1389201023378265
[6]  
Denault Jean-Bernard, 2004, IDrugs, V7, P315
[7]   Antioxidative function and substrate specificity of NAD(P)H-dependent alkenal/one oxidoreductase -: A new role for leukotriene B4 12-hydroxydehydrogenase/15-oxoprostaglandin 13-reductase [J].
Dick, RA ;
Kwak, MK ;
Sutter, TR ;
Kensler, TW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (44) :40803-40810
[8]   Caspase family proteases and apoptosis [J].
Fan, TJ ;
Han, LH ;
Cong, RS ;
Liang, J .
ACTA BIOCHIMICA ET BIOPHYSICA SINICA, 2005, 37 (11) :719-727
[9]   Lost in transcription: p21 repression, mechanisms, and consequences [J].
Gartel, AL ;
Radhakrishnan, SK .
CANCER RESEARCH, 2005, 65 (10) :3980-3985
[10]   Investigating the role of stereochemistry in the activity of anticancer acylfulvenes: Synthesis, reductase-mediated bioactivation, and cellular toxicity [J].
Gong, JC ;
Neels, JF ;
Yu, X ;
Kensler, TW ;
Peterson, LA ;
Sturla, SJ .
JOURNAL OF MEDICINAL CHEMISTRY, 2006, 49 (08) :2593-2599