Peptide-Mediated Specific Immobilization of Catalytically Active Cytochrome P450 BM3 Variant

Cytochrome P450 BM3 (CYP102A1) from Bacillus megaterium is an interesting target for biotechnological applications, because of its vast substrate variety combined with high P450 monooxygenase activity. The low stability in vitro could be overcome by immobilization on surfaces. Here we describe a nov...

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Veröffentlicht in:Bioconjugate chemistry 2016-04, Vol.27 (4), p.1090-1097
Hauptverfasser: Zernia, Sarah, Ott, Florian, Bellmann-Sickert, Kathrin, Frank, Ronny, Klenner, Marcus, Jahnke, Heinz-Georg, Prager, Andrea, Abel, Bernd, Robitzki, Andrea, Beck-Sickinger, Annette G
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Sprache:eng
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Zusammenfassung:Cytochrome P450 BM3 (CYP102A1) from Bacillus megaterium is an interesting target for biotechnological applications, because of its vast substrate variety combined with high P450 monooxygenase activity. The low stability in vitro could be overcome by immobilization on surfaces. Here we describe a novel method for immobilization on metal surfaces by using selectively binding peptides. A P450 BM3 triple mutant (3M-P450BM3: A74G, F87V, L188Q) was purified as protein thioester and ligated to indium tin oxide or gold binding peptides (BP) named HighSP-BP and Cys-BP, respectively. The ligation products were characterized by Western Blot and tryptic digestion combined with mass spectrometry, and displayed high affinity binding on the depicted surfaces. Next, we could demonstrate by benzyloxyresorufin O-dealkylation assay (BROD assay) that the activity of immobilized ligation products is higher than for the soluble form. The study provides a new tool for selective modification and immobilization of P450 variants.
ISSN:1043-1802
1520-4812
DOI:10.1021/acs.bioconjchem.6b00074