Poly(hydroxyalkanoate) Generation from Nonchiral Substrates Using Multiple Enzyme Immobilizations on Peptide Nanofibers.

ACS Biomater Sci Eng

Department of Innovative and Engineered Materials, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8502, Japan.

Published: December 2017

We developed a method for the immobilization of multiple active enzymes, allowing the production of chiral products from nonchiral substrates with recycling of expensive cofactors. Using a rapid, two-step process under nondenaturing conditions, we could preserve enzyme activity by separating the production of an immobilization scaffold from the attachment of the enzymes. The technique is applicable to a wide range of enzymes and will facilitate simple, cost-effective enzyme immobilization for research and industrial purposes. An ()-specific poly(hydroxyalkanoate) synthase (PhaC from ), an ()-specific dehydrogenase (FadB from , and an ()-specific hydratase (PhaJ4 from ) were immobilized by affinity tag-assisted binding to self-assembled antiparallel type β-sheets with a coiled fiber structure formed from a decapeptide (P-K-F-K-I-I-E-F-E-P). The functionalized scaffolds were capable of producing poly(3-hydroxybutyrate) from β-butyrolactone with the recycling of coenzyme A. Enzyme immobilization was confirmed by fluorescence microscopy using fusion proteins of the enzymes with fluorescent marker proteins, and activity was confirmed by spectroscopic activity assays.

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http://dx.doi.org/10.1021/acsbiomaterials.6b00329DOI Listing

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