Enzyme discovery and engineering for sustainable plastic recycling
Открытие и инженерная оптимизация ферментов для устойчивой переработки пластмасс
2021-03-03
SCID: 54.1/9cg3qgh4
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biocatalytic depolymerizationomics-based enzyme discoveryplastic-degrading enzymesprotein engineeringsustainable plastic recycling
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Abstract (AI)
The drastically increasing amount of plastic waste is causing an environmental crisis that requires innovative technologies for recycling post-consumer plastics to achieve waste valorization while meeting environmental quality goals. Biocatalytic depolymerization mediated by enzymes has emerged as an efficient and sustainable alternative for plastic treatment and recycling. A variety of plastic-degrading enzymes have been discovered from microbial sources. Meanwhile, protein engineering has been exploited to modify and optimize plastic-degrading enzymes. This review highlights the recent trends and up-to-date advances in mining novel plastic-degrading enzymes through state-of-the-art omics-based techniques and improving the enzyme catalytic efficiency and stability via various protein engineering strategies. Future research prospects and challenges are also discussed.
Key Findings
1
Enzyme-mediated biocatalytic depolymerization is presented as an efficient and sustainable approach for recycling post-consumer plastics.
2
Future development requires addressing remaining research challenges while meeting environmental quality goals.
3
Microbial sources have yielded diverse plastic-degrading enzymes with potential for plastic waste valorization.
4
Protein engineering strategies can improve the catalytic efficiency and stability of plastic-degrading enzymes.
5
State-of-the-art omics-based techniques are enabling discovery of novel plastic-degrading enzymes.
Research Object
plastic-degrading enzymes used for post-consumer plastic depolymerization and recycling
Research Subject
discovery through omics-based mining and protein-engineering improvement of catalytic efficiency and stability
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2021-03-03
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