| Literature DB >> 27214855 |
Markus Barth1, Annett Honak1, Thorsten Oeser1, Ren Wei1, Matheus R Belisário-Ferrari1, Johannes Then1, Juliane Schmidt1, Wolfgang Zimmermann2.
Abstract
TfCut2 from Thermobifida fusca KW3 and the metagenome-derived LC-cutinase are bacterial polyester hydrolases capable of efficiently degrading polyethylene terephthalate (PET) films. Since the enzymatic PET hydrolysis is inhibited by the degradation intermediate mono-(2-hydroxyethyl) terephthalate (MHET), a dual enzyme system consisting of a polyester hydrolase and the immobilized carboxylesterase TfCa from Thermobifida fusca KW3 was employed for the hydrolysis of PET films at 60°C. HPLC analysis of the reaction products obtained after 24 h of hydrolysis showed an increased amount of soluble products with a lower proportion of MHET in the presence of the immobilized TfCa. The results indicated a continuous hydrolysis of the inhibitory MHET by the immobilized TfCa and demonstrated its advantage as a second biocatalyst in combination with a polyester hydrolase for an efficient degradation oft PET films. The dual enzyme system with LC-cutinase produced a 2.4-fold higher amount of degradation products compared to TfCut2 after a reaction time of 24 h confirming the superior activity of his polyester hydrolase against PET films.Entities:
Keywords: Biocatalysis; Biodegradation; Bioprocess engineering; Polyester hydrolases; Synthetic polymers
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Year: 2016 PMID: 27214855 DOI: 10.1002/biot.201600008
Source DB: PubMed Journal: Biotechnol J ISSN: 1860-6768 Impact factor: 4.677