Construction of a highly stable artificial glutathione peroxidase on a protein nanoring
Stable Protein One (SP1) is a boiling-stable oligomeric protein. The unique characteristics of SP1 offer a scaffold to design artificial enzymes against extreme temperature. Here, an efficient antioxidase is successfully constructed on the ring-shaped SP1 homododecamer. By means of computational des...
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Veröffentlicht in: | Organic & biomolecular chemistry 2014-01, Vol.12 (2), p.362-369 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Stable Protein One (SP1) is a boiling-stable oligomeric protein. The unique characteristics of SP1 offer a scaffold to design artificial enzymes against extreme temperature. Here, an efficient antioxidase is successfully constructed on the ring-shaped SP1 homododecamer. By means of computational design and genetic engineering, the active center of glutathione peroxidase (GPx), selenocysteine (Sec), is introduced to the SP1 monomer surface, and the self-assembly properties of the protein monomer lead to a ring-shaped SP1 with homododecamer catalytic selenium centers. This artificial selenoenzyme exhibits high GPx catalytic activity and shows a typical ping-pong kinetic mechanism. Moreover, it has a significantly broader temperature range and high thermostability. Owing to having multi-GPx active centers on a SP1 oligomer, this selenium-containing biomacromolecule exerts an excellent capability to protect cells from oxidative damage at the mitochondrial level. This strategy represents a new way to develop thermostable artificial nanoenzymes for some specific applications.
Multi-GPx activity centers are constructed on a SP1 nanoring. This artificial biomacromolecule displays high GPx-like activity and shows high thermostability that can resist extremely high temperatures in practical catalysis. |
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ISSN: | 1477-0520 1477-0539 |
DOI: | 10.1039/c3ob41561a |