Identification of cytotoxic mediators and their putative role in the signaling pathways during docosahexaenoic acid (DHA)-induced apoptosis of cancer cells

被引:0
作者
Moitreyi Das
Sumantra Das
机构
[1] CSIR-Indian Institute of Chemical Biology,Neurobiology Division, Cell Biology and Physiology Department
来源
Apoptosis | 2016年 / 21卷
关键词
Docosahexaenoic acid; Astrocytes; Cancer; Apoptosis; 2D gel electrophoresis; ROS;
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摘要
Docosahexaenoic acid (DHA), an important w-3 fatty acid exhibits differential behavior in cancer cells of neural origin when compared to that in normal healthy astrocytes. Treatment of C6 glioma and SH-SY5Y cell lines and primary astrocytes, representing the neoplastic cells and normal healthy cells respectively, with 100 µM DHA for 24 h showed significant loss of cell viability in the both the cancer cells as determined by MTT assay, whereas the primary astrocytes cultures were unaffected. Such loss of cell viability was due to apoptosis as confirmed by TUNEL staining and caspase-3 activation in cancer cells. Proteomic approach, employing 2-dimensional gel electrophoresis (2DE), difference gel electrophoresis (DIGE), and MALDI-TOF-TOF analysis identified six proteins which unlike in the astrocytes, were differently altered in the cancer cells upon exposure to DHA, suggesting their putative contribution in causing apoptosis in these cells. Of these, annexin A2, calumenin, pyruvate kinase M2 isoform, 14-3-3ζ were downregulated while aldo keto reductase-1B8 (AKR1B8) and glutathione–S-transferase P1 subunit (GSTP1) showed upregulation by DHA in the cancer cells. siRNA-mediated knockdown of AKR1B8 and GSTP1 inhibit DHA-induced apoptosis confirming their role in apoptotic process. Furthermore, western blot analysis identified upregulation of PPARα and the MAP kinases, JNK and p38 as well as increased ROS production selectively in the cell lines. Results suggest that DHA selectively induces apoptosis in the neural cell lines by regulating the expression of the above proteins to activate multiple apoptotic pathways which in association with excess ROS and activated MAPKs promote cell death.
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页码:1408 / 1421
页数:13
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  • [1] Gharami K(2015)Essential role of docosahexaenoic acid towards development of a smarter brain Neurochem Int 89 51-62
  • [2] Das M(2006)Docosahexaenoic acid facilitates cell maturation and beta-adrenergic transmission in astrocytes J Lipid Res 47 571-581
  • [3] Das S(2007)Novel metabolism of docosahexaenoic acid in neural cells J Biol Chem 282 18661-18665
  • [4] Joardar A(2012)DHA inhibits ER Ca2+ release and ER stress in astrocytes following in vitro ischemia J Neurochem 20 622-630
  • [5] Sen AK(2013)Docosahexaenoic acid reduces cellular inflammatory response following permanent focal cerebral ischemia in rats J Nutr Biochem 24 2127-2137
  • [6] Das S(2014)Addition of docosahexaenoic acid, but not arachidonic acid, activates glutathione and thioredoxin antioxidant systems in murine hippocampal HT22 cells: potential implications in neuroprotection J Neurochem 131 470-483
  • [7] Kim HY(2006)Effect of altering dietary omega-6/omega-3 fatty acid ratios on prostate cancer membrane composition, cyclooxygenase-2, and prostaglandin E2 Clin Cancer Res 12 4662-4670
  • [8] Begum G(1996)The fatty acid composition of human gliomas differs from that found in nonmalignant brain tissue Lipids 31 1283-1288
  • [9] Kintner D(2001)Phospholipid fatty acids and neurotoxicity in human neuroblastoma SH-SY5Y cells Neurosci Lett 309 193-196
  • [10] Liu Y(1998)Profiles of the fatty acids in the plasma membrane of human brain tumors Cancer Biochem Biophys 16 301-312