Affiliation:
1. Institute of Quantitative Biology Biochemistry and Biotechnology School of Biological Sciences University of Edinburgh, King's Buildings Alexander Crum Brown Road Edinburgh EH9 3FF UK
Abstract
AbstractThe discovery and engineering of new plastic degrading enzymes is an important challenge in chemical biotechnology to enable transition to a more sustainable and circular plastics economy. This field has so far yielded a range of enzymes and microbial pathways for the recycling and valorization of plastic waste. New research from Uttamapinant et al. reports the discovery of a novel polyethylene terephthalate (PET) hydrolase from the human saliva metagenome that displays improved properties and catalytic performance over previously characterized PET hydrolases (PETases). The authors also demonstrate the site‐specific incorporation of a photocaged unnatural amino acid, 2,3‐diaminopropionic acid (DAP), which upon photodecaging enables covalent binding of DAP to the PET surface. Thus, this work highlights metagenomic datasets as an untapped source of new PET degrading enzymes and the chemical modification of PETases via genetic code expansion, enabling new biotechnologies for the circular plastics economy.
Funder
Medical Research Council
Engineering and Physical Sciences Research Council
Subject
General Chemistry,Catalysis
Cited by
6 articles.
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