Protein engineering and cofactor replacement have been employed as tools to introduce/modulate peroxidase activity in sperm whale Mb (myoglobin). Based on the rationale that haem peroxidase active sites are characterized by specific charged residues, the Mb haem crevice has been modified to host a haem-distalpropionate Arg residue and a proximal Asp, yielding the T67R/S92D Mb mutant. To code extra conformational mobility around the haem, and to increase the peroxidase catalytic efficiency, the T67R/S92D Mb mutant has been subsequently reconstituted with protohaem-l-histidine methyl ester, yielding a stable derivative, T67R/S92D Mb-H. The crystal structure of T67R/S92D cyano-metMb (1.4 Å resolution; R factor, 0.12) highlights a regular haem-cyanide binding mode, and the role for the mutated residues in affecting the haem propionates as well as the neighbouring water structure. The conformational disorder of the haem propionate-7 is evidenced by the NMR spectrum of the mutant. Ligand-binding studies show that the iron(III) centres of T67R/S92D Mb, and especially of T67R/S92D Mb-H, exhibit higher affinity for azide and imidazole than wild-type Mb. In addition, both protein derivatives react faster than wild-type Mb with hydrogen peroxide, showing higher peroxidase-like activity towards phenolic substrates. The catalytic efficiency of T67R/S92D Mb-H in these reactions is the highest so far reported for Mb derivatives. A model for the protein–substrate interaction is deduced based on the crystal structure and on the NMR spectra of protein–phenol complexes.
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February 2004
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Research Article|
February 01 2004
Engineering peroxidase activity in myoglobin: the haem cavity structure and peroxide activation in the T67R/S92D mutant and its derivative reconstituted with protohaemin-l-histidine
Raffaella RONCONE;
Raffaella RONCONE
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
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Enrico MONZANI;
Enrico MONZANI
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
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Monica MURTAS;
Monica MURTAS
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
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Giuseppe BATTAINI;
Giuseppe BATTAINI
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
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Andrea PENNATI;
Andrea PENNATI
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
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Anna Maria SANANGELANTONI;
Anna Maria SANANGELANTONI
†Dipartimento di Scienze Ambientali, Università di Parma, 43100 Parma, Italy
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Simone ZUCCOTTI;
Simone ZUCCOTTI
‡Dipartimento di Fisica INFM and Centro di Eccellenza per la Ricerca Biomedica, Istituto Nazionale Ricerca sul Cancro, Universita’ di Genova, 16132 Genova, Italy
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Martino BOLOGNESI;
Martino BOLOGNESI
‡Dipartimento di Fisica INFM and Centro di Eccellenza per la Ricerca Biomedica, Istituto Nazionale Ricerca sul Cancro, Universita’ di Genova, 16132 Genova, Italy
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Luigi CASELLA
Luigi CASELLA
1
*Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy
1To whom correspondence should be addressed (e-mail [email protected]).
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Publisher: Portland Press Ltd
Received:
June 11 2003
Revision Received:
October 14 2003
Accepted:
October 17 2003
Accepted Manuscript online:
October 17 2003
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London ©2004
2004
Biochem J (2004) 377 (3): 717–724.
Article history
Received:
June 11 2003
Revision Received:
October 14 2003
Accepted:
October 17 2003
Accepted Manuscript online:
October 17 2003
Citation
Raffaella RONCONE, Enrico MONZANI, Monica MURTAS, Giuseppe BATTAINI, Andrea PENNATI, Anna Maria SANANGELANTONI, Simone ZUCCOTTI, Martino BOLOGNESI, Luigi CASELLA; Engineering peroxidase activity in myoglobin: the haem cavity structure and peroxide activation in the T67R/S92D mutant and its derivative reconstituted with protohaemin-l-histidine. Biochem J 1 February 2004; 377 (3): 717–724. doi: https://doi.org/10.1042/bj20030863
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