Redox modulation of NF-κB nuclear translocation and DNA binding in metastatic melanoma.: The role of endogenous and γ-glutamyl transferase-dependent oxidative stress

被引:18
作者
Dominici, S
Visvikis, A
Pieri, L
Paolicchi, A
Valentini, MA
Comporti, M
Pompella, A
机构
[1] Univ Pisa, Sch Med, Dept Expt Pathol, I-56126 Pisa, Italy
[2] Univ Siena, Dept Pathophysiol & Expt Med, Siena, Italy
[3] Univ H Poincare, Nancy, France
来源
TUMORI JOURNAL | 2003年 / 89卷 / 04期
关键词
gamma-glutamyltransferase; hydrogen peroxide; melanoma; NF-kappa B; thiols;
D O I
10.1177/030089160308900416
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Aims and background. The transcription factor NF-kappaB is implicated in the expression of genes involved in cell proliferation, apoptosis and metastasis. In melanoma, high constitutive levels of NF-kappaB activation are usually observed. NF-kappaB is regulated by oxidation/reduction (redox) processes, and the occurrence of constitutive oxidative stress in melanoma cells has been documented. Recent studies of our laboratories showed that the membrane-bound gamma-glutamyl transferase (GGT) enzyme activity - expressed by a number of malignancies, including melanoma - can act as a basal source of superoxide, hydrogen peroxide and other prooxidants. Methods: In the present study we utilized the 2/60 clone of Me665/2 human metastatic melanoma, which displays high levels of GGT activity, in order to verify if the presence of this enzyme - through the promotion of redox processes - may influence the activation status of NF-kappaB. The latter was evaluated by determining the nuclear translocation of the p65 subunit (by immunoblot), the DNA binding of NF-kB (by electrophoretic mobility shift assay) and its transcriptional activity (by gene transactivation studies). Results: Me665/2/60 cells displayed a basal production of hydrogen peroxide. Stimulation of GGT activity by its substrates glutathione and glycyl-glycine caused additional production of hydrogen peroxide, up to levels approx. double the basal levels. Nuclear translocation of the NF-kappaB p65 subunit, DNA-binding and gene transactivation were thus investigated in Me665/2/60 cells whose GGT activity was modulated by means of substrates or inhibitors. Stimulation of GGT activity resulted in increased nuclear translocation of p65, while on the other hand NF-kappaB DNA binding and gene transactivation were paradoxically decreased. NF-kappaB DNA binding could be restored by treating cell lysates with the thiol-reducing agent dithiothreltol (DTT). Treatment of cells with exogenous hydrogen peroxide did not affect NF-kappaB activation status. Conclusions: Altogether, the data obtained indicate that GGT activity may impair the redox status of thiols that is critical for NF-kappaB DNA binding and gene transactivation, through the production of prooxidant species allegedly distinct from hydrogen peroxide. GGT activity therefore appears to be an additional factor in modulation of NF-kappaB transcriptional activity in melanoma, capable of hindering NF-kappaB DNA binding even in conditions where continuous oxidative stress would favor NF-kappaB nuclear translocation.
引用
收藏
页码:426 / 433
页数:8
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