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1.
Mediators Inflamm ; 2015: 434825, 2015.
Article in English | MEDLINE | ID: mdl-25873760

ABSTRACT

Thiopurines are extensively used immunosuppressants for the treatment of inflammatory bowel disease (IBD). The polymorphism of thiopurine S-methyltransferase (TPMT) influences thiopurine metabolism and therapy outcome. We used a TPMT knockdown (kd) model of human Jurkat T-lymphocytes cells to study the effects of treatment with 6-mercaptopurine (6-MP) and 6-thioguanine (6-TG) on proteome and phosphoproteome. We identified thirteen proteins with altered expression and nine proteins with altered phosphorylation signals. Three proteins (THIO, TXD17, and GSTM3) with putative functions in cellular oxidative stress responses were altered by 6-TG treatment and another protein PRDX3 was differentially phosphorylated in TPMT kd cells. Furthermore, reactive oxygen species (ROS) assay results were consistent with a significant induction of oxidative stress by both TPMT knockdown and thiopurine treatments. Immunoblot analyses showed treatment altered expression of key antioxidant enzymes (i.e., SOD2 and catalase) in both wt and kd groups, while SOD1 was downregulated by 6-TG treatment and TPMT knockdown. Collectively, increased oxidative stress might be a mechanism involved in thiopurine induced cytotoxicity and adverse effects (i.e., hepatotoxicity) and an antioxidant cotherapy might help to combat this. Results highlight the significance of oxidative stress in thiopurines' actions and could have important implications for the treatment of IBD patients.


Subject(s)
Mercaptopurine/pharmacology , Oxidative Stress/drug effects , Proteomics/methods , T-Lymphocytes/drug effects , Thioguanine/pharmacology , Humans , Inflammatory Bowel Diseases/drug therapy , Jurkat Cells , Methyltransferases/physiology , Phosphorylation , T-Lymphocytes/metabolism
2.
Ther Drug Monit ; 34(5): 584-92, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22972540

ABSTRACT

BACKGROUND: Thiopurine S-methyltransferase (TPMT) is an excellent example of an enzyme whose pharmacogenetic polymorphisms affect efficacy and toxicity of a drug. The association between TPMT activity and thiopurine-related myelosuppression is well recognized. To study the significance of TPMT deficiency in thiopurine metabolism and immunosuppressive activity in vitro, we established RNA interference-based TPMT knockdown (kd) in a Jurkat cell line. RESULTS: In Jurkat TPMT kd cells, TPMT expression was reduced to 73% at the RNA level and 83% at the protein level. TPMT kd cells were more sensitive to 6-mercaptopurine (6-MP) (10 µmol/L) and 6-thioguanine (6-TG) (8 µmol/L) than wild-type (wt) cells, (32% versus 20%) and (18% versus 9%), respectively. Both Jurkat wt and kd cells were more sensitive to 6-TG-induced apoptosis than to 6-MP. 6-TG activity was also more affected by TPMT levels than was 6-MP as reflected by IC60, concentrations that is, 6-MP [4.6 µmol/L (wt) and 4.7 µmol/L (kd)], 6-TG [2.7 µmol/L (wt) and 0.8 µmol/L (kd)]. IC60 concentrations induced significant apoptosis in both Jurkat wt and kd cells (257%, versus 314%) with 6-MP and (323% versus 306%) with 6-TG, respectively. At IC60 (6-MP) 6-thioguanine nucleotides (6-TGN) accumulation in cells was 518 versus 447 pmol/million cells in wt and kd cells, respectively. On the other hand 6-TGN accumulation at IC60 (6-TG) was 477 versus 570 pmol/million cells in wt and kd cells, respectively. 6-Methylated mercaptopurine (6-MeMP) concentrations were more affected than 6-TGN by TPMT kd (194 versus 10 pmol/million cells) in wt and kd cells, respectively. CONCLUSION: We conclude that TPMT kd cells are an appropriate in vitro model to investigate the significance of TPMT deficiency with thiopurine therapy and could be helpful in understanding possible clinical consequences of TPMT polymorphism.


Subject(s)
Drug Hypersensitivity/enzymology , Drug Hypersensitivity/genetics , Methyltransferases/deficiency , Methyltransferases/genetics , Purine-Pyrimidine Metabolism, Inborn Errors/enzymology , Purine-Pyrimidine Metabolism, Inborn Errors/genetics , T-Lymphocytes/enzymology , Apoptosis/drug effects , Apoptosis/genetics , Cell Line, Tumor , Gene Knockdown Techniques/methods , Guanine Nucleotides/genetics , Guanine Nucleotides/metabolism , Humans , Immune Tolerance , Jurkat Cells , Mercaptopurine/metabolism , Mercaptopurine/pharmacology , Polymorphism, Genetic/drug effects , T-Lymphocytes/drug effects , Thioguanine/metabolism , Thioguanine/pharmacology , Thionucleotides/genetics , Thionucleotides/metabolism
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