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glutathione reductase and thiredoxin reductase Structure mechanism of mammalian thioredoxin reductase: The active site is a redox-active selenolthiol/selenenylsulfide formed from the conserved cysteine-selenocysteine sequence Crystal structure of the human

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Glutathione is decisive in either limitingor preventing the harmful effects induced by free radicals,and canprotect the body from oxidising agents, such as pesticides, hydrogen sulphide, carbon monoxide, heavy metals (mercury, cadmium and chromium), cigarette smokeand many other substances we come in contact withdue to pollution of the atmosphere and of foodstuffs

glutathione reductase and thiredoxin reductase Structure mechanism of mammalian thioredoxin reductase: The active site is a redox-active selenolthiol/selenenylsulfide formed from the conserved cysteine-selenocysteine sequence Crystal structure of the human

R., Wiltbank, M

glutathione reductase and thiredoxin reductase Structure mechanism of mammalian thioredoxin reductase: The active site is a redox-active selenolthiol/selenenylsulfide formed from the conserved cysteine-selenocysteine sequence Crystal structure of the human

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glutathione reductase and thiredoxin reductase Structure mechanism of mammalian thioredoxin reductase: The active site is a redox-active selenolthiol/selenenylsulfide formed from the conserved cysteine-selenocysteine sequence Crystal structure of the human

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glutathione reductase and thiredoxin reductase Structure mechanism of mammalian thioredoxin reductase: The active site is a redox-active selenolthiol/selenenylsulfide formed from the conserved cysteine-selenocysteine sequence Crystal structure of the human

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