Evidence supporting a role for dihydroorotate dehydrogenase, bioenergetics, and p53 in selective teriflunomide-induced apoptosis in transformed versus normal human keratinocytes

被引:0
作者
Numsen Hail
Ping Chen
Jadwiga J. Kepa
Lane R. Bushman
机构
[1] University of Colorado School of Pharmacy,Department of Pharmaceutical Sciences
来源
Apoptosis | 2012年 / 17卷
关键词
Teriflunomide; Dihydroorotate dehydrogenase; Bioenergetics; p53; Apoptosis; Skin cancer chemoprevention;
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学科分类号
摘要
We have demonstrated previously that the dihydroorotate dehydrogenase (DHODH) inhibitor teriflunomide (TFN) encourages apoptosis in transformed human keratinocytes. Here we sought to determine if this cytotoxic effect could be restricted to transformed keratinocytes relative to their normal human epidermal keratinocyte (NHEK) counterparts, and ascertain a potential mechanistic basis for the selectivity. The NHEK cells proliferated much slower than the premalignant HaCaT and malignant COLO 16 keratinocytes, and exogenous uridine added to the culture medium did not affect this growth. Similarly, DHODH expression and the bioenergetic characteristics of the normal cells were markedly dissimilar from those observed in the transformed cells indicating that de novo pyrimidine synthesis was involved with keratinocyte proliferation. Moreover, a short-term exposure to TFN caused a wild-type p53 response in the NHEK cells illustrating that pyrimidine metabolic stress could regulate this tumor suppressor protein in the normal cells. TFN-induced apoptosis occurred primarily in S phase HaCaT cells. This cell death was sensitive to uridine, an antioxidant, and a caspase inhibitor, and the suppression of Bcl-XL and the induction of Mn superoxide dismutase preceded it. These events suggested that mitochondrial/redox stress was involved with the cytotoxic effect of TFN. Conversely, a long-term exposure to TFN caused G0/G1 arrest in the NHEK cells, which supported a cytoprotective role for p53 against TFN-induced apoptosis. Together, these results propose that TFN could be useful in the prevention or therapy of non-melanoma skin cancers and possibly other hyperproliferative keratinocytic diseases.
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页码:258 / 268
页数:10
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共 143 条
[11]  
Schwartz DP(2009) arrest in their normal counterparts Apoptosis 14 449-863
[12]  
Mann E(2004)Dihydroorotate dehydrogenase is required for Apoptosis 9 437-447
[13]  
Mall JW(1981)-(4-hydroxyphenyl)retinamide-induced reactive oxygen species production and apoptosis Cancer Res 41 3010-3017
[14]  
Myers JA(1994)The hydroxyl functional group of Mol Cell Biochem 140 1-22
[15]  
Xu X(1992)-(4-hydroxyphenyl)retinamide mediates cellular uptake and cytotoxicity in premalignant and malignant human epithelial cells Br J Cancer 65 229-233
[16]  
Saclarides TJ(1994)Selective apoptosis induction by the cancer chemopreventive agent Arch Gerontol Geriatr 19 185-196
[17]  
Philipp AW(2004)-(4-hydroxyphenyl)retinamide is achieved by modulating mitochondrial bioenergetics in premalignant and malignant human prostate epithelial cells Am J Dermatopathol 26 177-181
[18]  
Pollmann C(1996)Apoptosis induction by the natural product cancer chemopreventive agent deguelin is mediated through the inhibition of mitochondrial respiration Histochem Cell Biol 105 119-128
[19]  
Xu X(2005)Salvage of circulating pyrimidine nucleosides in the rat Proc Natl Acad Sci USA 26 5992-5997
[20]  
Shen J(2006)Physiological concentrations of purines and pyrimidines Oncogene 25 4706-4716