The Involvement of PPARs in the Peculiar Energetic Metabolism of Tumor Cells

被引:25
作者
Antonosante, Andrea [1 ]
d'Angelo, Michele [1 ]
Castelli, Vanessa [1 ]
Catanesi, Mariano [1 ]
Iannotta, Dalila [1 ]
Giordano, Antonio [2 ,3 ]
Ippoliti, Rodolfo [1 ]
Benedetti, Elisabetta [1 ]
Cimini, Annamaria [1 ,2 ,4 ]
机构
[1] Univ Aquila, Dept Life Hlth & Environm Sci, I-67100 Laquila, Italy
[2] Temple Univ, Dept Biol, Sbarro Inst Canc Res & Mol Med, Philadelphia, PA 19122 USA
[3] Univ Siena, Dept Med Surg & Neurosci, I-53100 Siena, Italy
[4] Natl Inst Nucl Phys INFN, Gran Sasso Natl Lab LNGS, I-67100 Assergi, Italy
关键词
nuclear receptors; energy metabolism; cancer metabolism; PROLIFERATOR-ACTIVATED-RECEPTOR; CHRONIC LYMPHOCYTIC-LEUKEMIA; FATTY-ACID OXIDATION; BREAST-CANCER CELLS; PYRUVATE-DEHYDROGENASE KINASE; HUMAN HEPATOCELLULAR-CARCINOMA; PALMITOYLTRANSFERASE I GENE; HYPOXIA-INDUCIBLE FACTOR; ELEMENT-BINDING PROTEIN; DELTA PROMOTES SURVIVAL;
D O I
10.3390/ijms19071907
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Energy homeostasis is crucial for cell fate, since all cellular activities are strongly dependent on the balance between catabolic and anabolic pathways. In particular, the modulation of metabolic and energetic pathways in cancer cells has been discussed in some reports, but subsequently has been neglected for a long time. Meanwhile, over the past 20 years, a recovery of the study regarding cancer metabolism has led to an increasing consideration of metabolic alterations in tumors. Cancer cells must adapt their metabolism to meet their energetic and biosynthetic demands, which are associated with the rapid growth of the primary tumor and colonization of distinct metastatic sites. Cancer cells are largely dependent on aerobic glycolysis for their energy production, but are also associated with increased fatty acid synthesis and increased rates of glutamine consumption. In fact, emerging evidence has shown that therapeutic resistance to cancer treatment may arise from the deregulation of glucose metabolism, fatty acid synthesis, and glutamine consumption. Cancer cells exhibit a series of metabolic alterations induced by mutations that lead to a gain-of-function of oncogenes, and a loss-of-function of tumor suppressor genes, including increased glucose consumption, reduced mitochondrial respiration, an increase of reactive oxygen species, and cell death resistance; all of these are responsible for cancer progression. Cholesterol metabolism is also altered in cancer cells and supports uncontrolled cell growth. In this context, we discuss the roles of peroxisome proliferator-activated receptors (PPARs), which are master regulators of cellular energetic metabolism in the deregulation of the energetic homeostasis, which is observed in cancer. We highlight the different roles of PPAR isotypes and the differential control of their transcription in various cancer cells.
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页数:30
相关论文
共 196 条
[21]   New hepatic fat activates PPARα to maintain glucose, lipid, and cholesterol homeostasis [J].
Chakravarthy, MV ;
Pan, ZJ ;
Zhu, YM ;
Tordjman, K ;
Schneider, JG ;
Coleman, T ;
Turk, J ;
Semenkovich, CF .
CELL METABOLISM, 2005, 1 (05) :309-322
[22]   Implications of a peroxisome proliferator-activated receptor alpha (PPARα) ligand clofibrate in breast cancer [J].
Chandran, Karthic ;
Goswami, Sudeshna ;
Sharma-Walia, Neelam .
ONCOTARGET, 2016, 7 (13) :15577-15599
[23]   HMGCS2 enhances invasion and metastasis via direct interaction with PPARa to activate Src signaling in colorectal cancer and oral cancer [J].
Chen, Shih-Wen ;
Chou, Chiang-Ting ;
Chang, Cheng-Chi ;
Li, Yue-Ju ;
Chen, Szu-Ta ;
Lin, I-Ching ;
Kok, Sang-Heng ;
Cheng, Shih-Jung ;
Lee, Jang-Jaer ;
Wu, Tai-Sheng ;
Kuo, Min-Liang ;
Lin, Been-Ren .
ONCOTARGET, 2017, 8 (14) :22460-22476
[24]   PPARα regulates tumor cell proliferation and senescence via a novel target gene carnitine palmitoyltransferase 1C [J].
Chen, Yixin ;
Wang, Yongtao ;
Huang, Yaoyao ;
Zeng, Hang ;
Hu, Bingfang ;
Guan, Lihuan ;
Zhang, Huizhen ;
Yu, Ai-Ming ;
Johnson, Caroline H. ;
Gonzalez, Frank J. ;
Huang, Min ;
Bi, Huichang .
CARCINOGENESIS, 2017, 38 (04) :474-483
[25]   Targeting ODC1 inhibits tumor growth through reduction of lipid metabolism in human hepatocellular carcinoma [J].
Choi, Yunseon ;
Oh, Sang Taek ;
Won, Min-Ah ;
Choi, Kyung Mi ;
Ko, Min Ji ;
Seo, Daekwan ;
Jeon, Tae-Won ;
Baik, In Hye ;
Ye, Sang-Kyu ;
Park, Keon Uk ;
Park, In-Chul ;
Jang, Byeong-Churl ;
Seo, Jun Young ;
Lee, Yun-Han .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2016, 478 (04) :1674-1681
[26]   Regulation of epithelial-mesenchymal IL-1 signaling by PPARβ/δ is essential for skin homeostasis and wound healing [J].
Chong, Han Chung ;
Tan, Ming Jie ;
Philippe, Virginie ;
Tan, Siew Hwey ;
Tan, Chek Kun ;
Ku, Chee Wai ;
Goh, Yan Yih ;
Wahli, Walter ;
Michalik, Liliane ;
Tan, Nguan Soon .
JOURNAL OF CELL BIOLOGY, 2009, 184 (06) :817-831
[27]   The M2 splice isoform of pyruvate kinase is important for cancer metabolism and tumour growth [J].
Christofk, Heather R. ;
Vander Heiden, Matthew G. ;
Harris, Marian H. ;
Ramanathan, Arvind ;
Gerszten, Robert E. ;
Wei, Ru ;
Fleming, Mark D. ;
Schreiber, Stuart L. ;
Cantley, Lewis C. .
NATURE, 2008, 452 (7184) :230-U74
[28]  
CORNIC M, 1992, CANCER RES, V52, P3329
[29]   Observations on the carbohydrate metabolism of tumours. [J].
Crabtree, HG .
BIOCHEMICAL JOURNAL, 1929, 23 (03) :536-545
[30]   HnRNP proteins controlled by c-Myc deregulate pyruvate kinase mRNA splicing in cancer [J].
David, Charles J. ;
Chen, Mo ;
Assanah, Marcela ;
Canoll, Peter ;
Manley, James L. .
NATURE, 2010, 463 (7279) :364-U114