Pub. Date : 2016 Sep
PMID : 27343172
6 Functional Relationships(s)Download |
Sentence | Compound Name | Protein Name | Organism |
1 | At low thiocyanate concentration and in the presence of hydrogen peroxide the observed reaction sequence is Compound I ferric MPO Compound II MPO-cyanide complex, whereas at high thiocyanate concentrations and in the absence of H2O2 the only observed transition is Compound I ferric MPO. | Cyanides | myeloperoxidase | Homo sapiens |
2 | At low thiocyanate concentration and in the presence of hydrogen peroxide the observed reaction sequence is Compound I ferric MPO Compound II MPO-cyanide complex, whereas at high thiocyanate concentrations and in the absence of H2O2 the only observed transition is Compound I ferric MPO. | Cyanides | myeloperoxidase | Homo sapiens |
3 | At low thiocyanate concentration and in the presence of hydrogen peroxide the observed reaction sequence is Compound I ferric MPO Compound II MPO-cyanide complex, whereas at high thiocyanate concentrations and in the absence of H2O2 the only observed transition is Compound I ferric MPO. | Cyanides | myeloperoxidase | Homo sapiens |
4 | The reaction of ferric MPO with hypothiocyanite directly forms the MPO-cyanide complex, whereas a transient product derived from the reaction between hypothiocyanite and hydrogen peroxide is demonstrated to mediate the conversion of ferric MPO to Compound II. | Cyanides | myeloperoxidase | Homo sapiens |
5 | The reaction of ferric MPO with hypothiocyanite directly forms the MPO-cyanide complex, whereas a transient product derived from the reaction between hypothiocyanite and hydrogen peroxide is demonstrated to mediate the conversion of ferric MPO to Compound II. | Cyanides | myeloperoxidase | Homo sapiens |
6 | The reaction of ferric MPO with hypothiocyanite directly forms the MPO-cyanide complex, whereas a transient product derived from the reaction between hypothiocyanite and hydrogen peroxide is demonstrated to mediate the conversion of ferric MPO to Compound II. | Cyanides | myeloperoxidase | Homo sapiens |