EFFECTS OF THE PHENACETIN METABOLITE 4-NITROSOPHENETOL ON GLYCOLYSIS AND PENTOSE-PHOSPHATE PATHWAY IN HUMAN RED-CELLS

被引:6
|
作者
GALLEMANN, D
EYER, P
机构
来源
BIOLOGICAL CHEMISTRY HOPPE-SEYLER | 1993年 / 374卷 / 01期
关键词
ERYTHROCYTES; OXIDATIVE STRESS; NITROSOARENES; GLYCOLYSIS; PENTOSE PHOSPHATE PATHWAY;
D O I
10.1515/bchm3.1993.374.1-6.37
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human erythrocytes exposed to 4-nitrosophenetol showed marked alterations of their endogenous metabolism. Rapid ferrihemoglobin formation mediated by the NADPH-dependent enzymic cycling of the nitrosoarene (''Kiese cycle'') and extensive GSSG production caused an immediate drain of G-6-P into the pentose phosphate pathway at maximal flow. Despite a 2.4-fold increase in glucose phosphorylation rate and a branching ratio of 97:3 between pentose phosphate pathway and Embden-Meyerhof pathway, the G-6-P supply was obviously insufficient to meet the immense NADPH demand. Thus, a significant recycling of pentose phosphate pathway-derived F-6-P was observed in the order of 65%. Comparison of NADPH regeneration and ferrihemoglobin formation indicates the ''Kiese cycle'' to be a minor mechanism in ferrihemoglobin production in the case of high 4-nitrosophenetol concentrations. Most probably, reactive intermediates of 4-nitrosophenetol other than N-hydroxy-4-phenetidine, i.e. bicyclic arylamines and glutathione S-conjugates are formed which produce ferrihemoglobin without involvement of NADPH. The experiments have shown that red cells are remarkable robust to tackle the massive oxidative stress as elicited by 4-nitrosophenetol. The immediate metabolic response of the pentose phosphate pathway allows rapid regeneration of reduced glutathione. Thereby, SH-containing enzymes are effectively protected and/or regenerated and hemolysis is kept minimal. Hence, red cells are favourably suited for clearing the blood from N-oxygenated artlamines before they can reach more sensitive target organs.
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页码:37 / 49
页数:13
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