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Involvement of Ceramide in the Mechanism of Cr(VI)-induced Apoptosis of CHO Cells
Authors:Shikibu Muranaka  Tomoko Kanno  Hirofumi Fujita  Hirotsugu Kobuchi  Jitsuo Akiyama  Tatsuji Yasuda
Institution:1. Institute of Medical Science, Kurashiki Medical Center, 710-8522, Kurashiki, Japanutsumiko@mx3.kct.ne.jp;3. Institute of Medical Science, Kurashiki Medical Center, 710-8522, Kurashiki, Japan;4. Department of Cell Chemistry, Okayama University Graduate School of Medicine and Dentistry, 700-8558, Okayama, Japan;5. Doonan Institute of Medical Science, 041-8502, Hakodate, Japan
Abstract:Mitochondria reduce Cr(VI) to Cr(V) with concomitant generation of reactive oxygen species, thereby exhibiting cytotoxic effects leading to apoptosis in various types of cells. To clarify the mechanism by which Cr(VI) induces apoptosis, we examined the effect of Cr(VI) on Chinese hamster ovary (CHO) cells. Cr(VI) increased cellular levels of ceramide by activating acid sphingomyelinase (ASMase) and inhibiting the phosphorylation of pleckstrin homology domain-containing protein kinase B (Akt). Cr(VI) also induced cyclosporin A- and trifluoperazine-sensitive depolarization of mitochondria and activated caspase-3, 8 and 9, thereby causing fragmentation of cellular DNA. The presence of desipramine, an inhibitor of ASMase, and membrane permeable pCPT-cAMP suppressed the Cr(VI)-induced activation of caspases and DNA fragmentation. These results suggested that accumulation of ceramide play an important role in the Cr(VI)-induced apoptosis of CHO cells through activation of mitochondrial membrane permeability transition.
Keywords:Apoptosis  Ceramide  Chromium  Mitochondrial permeability transition  p-Akt  Akt  pleckstrin homology domain-containing protein kinase B  Ac-DEVD-MCA  acetyl-Asp-Glu-Val-Asp-MCA  Ac-IETD-MCA  acetyl-Ile-Glu-Thr-Asp-MCA  Ac-LEHD-MCA  acetyl-Leu-Glu-His-Asp-MCA  CHO  Chinese hamster ovary  Cr  chromium  CsA  cyclosporin A  DCFH-DA  2′  7′-dichlorofluorescein diacetate  Hoechst 33342  2′-(4-Ethoxyphenyl)-5-(4-methyl-1-piperazinyl)-2  5′-bi-1H-benzimidazole  JC-1  5  5′  6  6′-tetrachloro-1  1′  3  3′-tetraethylbenzimidazolyl carbocyanine iodide  MPT  membrane permeability transition  PI  propidium iodide  ROS  reactive oxygen species  TFZ  trifluoperazine dihydrochloride  z-VAD-fmk  z-Val-Ala-Asp (OMe) fluoromethylketone  pCPT-cAMP  8-(4-chlorophenylthio) adenosine 3′:5′-cyclic monophosphate
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