Functional Assembly of Caenorhabditis elegans Cytochrome b-2 (Cecytb-2) into Phospholipid Bilayer Nanodisc with Enhanced Iron Reductase Activity

Among seven homologs of cytochrome in a model organism , Cecytb-2 was confirmed to be expressed in digestive organs and was considered as a homolog of human Dcytb functioning as a ferric reductase. Cecytb-2 protein was expressed in cells, purified, and reconstituted into a phospholipid bilayer nanod...

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Veröffentlicht in:Biomolecules (Basel, Switzerland) Switzerland), 2021-01, Vol.11 (1), p.96
Hauptverfasser: Abosharaf, Hamed A, Sakamoto, Yuki, Radwan, Aliaa M, Yuzu, Keisuke, Fujimura, Mika, Diab, Thoria, Mohamed, Tarek M, Chatani, Eri, Kimura, Tetsunari, Tsubaki, Motonari
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Sprache:eng
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Zusammenfassung:Among seven homologs of cytochrome in a model organism , Cecytb-2 was confirmed to be expressed in digestive organs and was considered as a homolog of human Dcytb functioning as a ferric reductase. Cecytb-2 protein was expressed in cells, purified, and reconstituted into a phospholipid bilayer nanodisc. The reconstituted Cecytb-2 in nanodisc environments was extremely stable and more reducible with ascorbate than in a detergent-micelle state. We confirmed the ferric reductase activity of Cecytb-2 by analyzing the oxidation of ferrous heme upon addition of ferric substrate under anaerobic conditions, where clear and saturable dependencies on the substrate concentrations following the Michaelis-Menten equation were observed. Further, we confirmed that the ferric substrate was converted to a ferrous state by using a nitroso-PSAP assay. Importantly, we observed that the ferric reductase activity of Cecytb-2 became enhanced in the phospholipid bilayer nanodisc.
ISSN:2218-273X
2218-273X
DOI:10.3390/biom11010096