Silibinin inhibits aberrant lipid metabolism, proliferation and emergence of androgen-independence in prostate cancer cells via primarily targeting the sterol response element binding protein 1

被引:50
|
作者
Nambiar, Dhanya K. [1 ,2 ]
Deep, Gagan [1 ,3 ]
Singh, Rana P. [2 ]
Agarwal, Chapla [1 ,3 ]
Agarwal, Rajesh [1 ,3 ]
机构
[1] Univ Colorado, Skaggs Sch Pharm & Pharmaceut Sci, Dept Pharmaceut Sci, Aurora, CO 80045 USA
[2] Jawaharlal Nehru Univ, Sch Life Sci, New Delhi, India
[3] Univ Colorado, Ctr Canc, Aurora, CO USA
关键词
Prostate cancer; lipogenesis; chemoprevention; phytochemicals; AMPK; SREBP1; DE-NOVO LIPOGENESIS; TRANSGENIC ADENOCARCINOMA; INTRATUMORAL ANDROGENS; MOLECULAR-MECHANISMS; CYCLE ARREST; PROGRESSION; ACTIVATION; CASTRATION; GROWTH; RECEPTOR;
D O I
10.18632/oncotarget.2488
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Prostate cancer (PCA) kills thousands of men every year, demanding additional approaches to better understand and target this malignancy. Recently, critical role of aberrant lipogenesis is highlighted in prostate carcinogenesis, offering a unique opportunity to target it to reduce PCA. Here, we evaluated efficacy and associated mechanisms of silibinin in inhibiting lipid metabolism in PCA cells. At physiologically achievable levels in human, silibinin strongly reduced lipid and cholesterol accumulation specifically in human PCA cells but not in non-neoplastic prostate epithelial PWR-1E cells. Silibinin also decreased nuclear protein levels of sterol regulatory element binding protein 1 and 2 (SREBP1/2) and their target genes only in PCA cells. Mechanistically, silibinin activated AMPK, thereby increasing SREBP1 phosphorylation and inhibiting its nuclear translocation; AMPK inhibition reversed silibinin-mediated decrease in nuclear SREBP1 and lipid accumulation. Additionally, specific SREBP inhibitor fatostatin and stable overexpression of SREBP1 further confirmed the central role of SREBP1 in silibinin-mediated inhibition of PCA cell proliferation and lipid accumulation and cell cycle arrest. Importantly, silibinin also inhibited synthetic androgen R1881-induced lipid accumulation and completely abrogated the development of androgen-independent LNCaP cell clones via targeting SREBP1/2. Together, these mechanistic studies suggest that silibinin would be effective against PCA by targeting critical aberrant lipogenesis.
引用
收藏
页码:10017 / 10033
页数:17
相关论文
共 36 条
  • [21] Growth inhibitory concentrations of androgens up-regulate insulin-like growth factor binding protein-3 expression via an androgen response element in LNCaP human prostate cancer cells
    Peng, Lihong
    Malloy, Peter J.
    Wang, Jining
    Feldman, David
    ENDOCRINOLOGY, 2006, 147 (10) : 4599 - 4607
  • [22] Selective roles for cAMP response element-binding protein binding protein and p300 protein as coregulators for androgen-regulated gene expression in advanced prostate cancer cells (vol 287, pg 4000, 2012)
    Ianculescu, Irina
    Wu, Dai-Ying
    Siegmund, Kimberly D.
    Stallcup, Michael R.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (43) : 35985 - 35985
  • [23] Pharmacologic inhibition of site 1 protease activity inhibits sterol regulatory element-binding protein processing and reduces lipogenic enzyme gene expression and lipid synthesis in cultured cells and experimental animals
    Hawkins, Julie L.
    Robbins, Michael D.
    Warren, Laurie C.
    Xia, Donghui
    Petras, Stephen F.
    Valentine, James J.
    Varghese, Alison H.
    Wang, Ing-Kae
    Subashi, Timothy A.
    Shelly, Lorraine D.
    Hay, Bruce A.
    Landschulz, Katherine T.
    Geoghegan, Kieran F.
    Harwood, H. James, Jr.
    JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 2008, 326 (03): : 801 - 808
  • [24] miR-375 upregulates lipid metabolism and inhibits cell proliferation involved in chicken fatty liver formation and inheritance via targeting recombination signal binding protein for immunoglobulin kappa J region (RBPJ)
    Zhang, Yong-Hong
    Xie, Heng-Li
    Yang, Yu-Wei
    Wen, Jie
    Liu, Ran-Ran
    Zhao, Gui-Ping
    Tan, Xiao-Dong
    Liu, Zhen
    Zheng, Yi
    Zhang, Jia-Bao
    POULTRY SCIENCE, 2023, 102 (01)
  • [25] The SDF-1α/CXCR4 axis induces the expression of fatty acid synthase via sterol regulatory element-binding protein-1 activation in cancer cells
    Kim, KyeongJin
    Kim, Hye Young
    Cho, Hyun Kook
    Kim, Ki Hyeong
    Cheong, JaeHun
    CARCINOGENESIS, 2010, 31 (04) : 679 - 686
  • [26] Targeting sterol regulatory element binding protein 1 (SREBP1) improves response to standard-of-care chemotherapy and alters the tumor microenvironment in pre-clinical models of obesity and ovarian cancer
    Stack, M. Sharon
    Liu, Yueying
    Yang, Jing
    Hilliard, Tyvette S.
    Wang, Zhikun
    Johnson, Jeff
    Wang, Wanrui
    Dominique, Gena
    Harper, Elizabeth I.
    Stavrou, Nicholas M.
    Juncker-Jensen, Anna
    CANCER RESEARCH, 2024, 84 (05)
  • [27] HIGH DENSITY LIPOPROTEIN INDUCES PROLIFERATION AND MIGRATION OF HUMAN PROSTATE ANDROGEN INDEPENDENT CANCER CELLS VIA ATP-BINDING CASSETTE TRANSPORTER A1 BY A CHOLESTEROL-INDEPENDENT MECHANISM
    Sekine, Yoshitaka
    Furuya, Yosuke
    Koike, Hidekazu
    Suzuki, Kazuhiro
    Remaley, Alan
    JOURNAL OF UROLOGY, 2010, 183 (04): : E42 - E43
  • [28] Insulin-like growth factor binding protein-related protein 1 inhibits proliferation of MCF-7 breast cancer cells via a senescence-like mechanism
    Wilson, HMP
    Birnbaum, RS
    Poot, M
    Quinn, LS
    Swisshelm, K
    CELL GROWTH & DIFFERENTIATION, 2002, 13 (05): : 205 - 213
  • [29] Novel genes in cell cycle control and lipid metabolism with dynamically regulated binding sites for sterol regulatory element-binding protein 1 and RNA polymerase II in HepG2 cells detected by chromatin immunoprecipitation with microarray detection
    Motallebipour, Mehdi
    Enroth, Stefan
    Punga, Tanel
    Ameur, Adam
    Koch, Christoph
    Dunham, Ian
    Komorowski, Jan
    Ericsson, Johan
    Wadelius, Claes
    FEBS JOURNAL, 2009, 276 (07) : 1878 - 1890
  • [30] Insulin inhibits cholesterol 7alpha-hydroxylase gene (CYP7A1) transcription via forkhead transcription factor (Foxo1) and sterol response element binding protein (SREBP) signaling pathways.
    Chiang, J
    Kong, S
    Li, T
    Spalding-Yoder, B
    Owsley, E
    Del Signore, S
    GASTROENTEROLOGY, 2005, 128 (04) : A754 - A754