Title : [Myeloperoxidase as a factor of oxidative damage of the myocardium: inactivation of dihydrolipoamide dehydrogenase].

Pub. Date : 1998

PMID : 9706251






4 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 The MPO/NADH/halide systems, where NADH replaced H2O2, also inactivated LADH. NAD myeloperoxidase Homo sapiens
2 The MPO/NADH/halide systems, where NADH replaced H2O2, also inactivated LADH. NAD myeloperoxidase Homo sapiens
3 Native (not denatured) catalase completely prevented the MPO/NADH/Kl system effect (Table 1), in close agreement with H2O2 production by the LADH-catalysed NADH oxidation and the role of H2O2 in LADH inactivation. NAD myeloperoxidase Homo sapiens
4 Native (not denatured) catalase completely prevented the MPO/NADH/Kl system effect (Table 1), in close agreement with H2O2 production by the LADH-catalysed NADH oxidation and the role of H2O2 in LADH inactivation. NAD myeloperoxidase Homo sapiens