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Active species of horseradish peroxidase (HRP) and cytochrome P450: two electronic chameleons.
PubMed
Authors: de Visser SP, Shaik S, Sharma PK, Kumar D, Thiel W
Year
2003
Paper ID
12964
Status
Peer-reviewed
Abstract Read
~2 min
Abstract Words
152
Citations
N/A
Abstract
The active site of HRP Compound I (Cpd I) is modeled using hybrid density functional theory (UB3LYP). The effects of neighboring amino acids and of environmental polarity are included. The low-lying states have porphyrin radical cationic species (Por(*)(+)). However, since the Por(*)(+) species is a very good electron acceptor, other species, which can be either the ligand or side chain amino acid residues, may participate in electron donation to the Por(*)(+) moiety, thereby making Cpd I behave like a chemical chameleon. Thus, this behavior that was noted before for Cpd I of P450 is apparently much more wide ranging than initially appreciated. Since chemical chameleonic behavior property was found to be expressed not only in the properties of Cpd I itself, but also in its reactivity, the roots of this phenomenon are generalized. A comparative discussion of Cpd I species follows for the enzymes HRP, CcP, APX, CAT (catalase), and P450.
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- This paper contributes to the Quantum Chemistry research area in the Quantum Articles archive.
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- The active site of HRP Compound I (Cpd I) is modeled using hybrid density functional theory (UB3LYP).
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