Determinants for an Efficient Enzymatic Catalysis in Poly(Ethylene Terephthalate) Degradation

被引:5
作者
Castro-Rodriguez, Jose Augusto [1 ]
Rodriguez-Sotres, Rogelio [2 ]
Farres, Amelia [1 ]
机构
[1] Univ Nacl Autonoma Mexico, Fac Quim, Dept Alimentos & Biotecnol, Mexico City 04510, Mexico
[2] Univ Nacl Autonoma Mexico, Fac Quim, Dept Bioquim, Mexico City 04510, Mexico
关键词
PET hydrolases; mass transfer; catalytic efficiency; enzyme kinetics; chimeras; adsorption; high crystallinity; PET microstructures; POLYETHYLENE TEREPHTHALATE FILMS; THERMOBIFIDA-CELLULOSILYTICA; POLYESTER HYDROLASES; PLASTIC DEGRADATION; BRANCH COMPOST; PET; HYDROLYSIS; CUTINASE; BINDING; PROTEIN;
D O I
10.3390/catal13030591
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The enzymatic degradation of the recalcitrant poly(ethylene terephthalate) (PET) has been an important biotechnological goal. The present review focuses on the state of the art in enzymatic degradation of PET, and the challenges ahead. This review covers (i) enzymes acting on PET, (ii) protein improvements through selection or engineering, (iii) strategies to improve biocatalyst-polymer interaction and monomer yields. Finally, this review discusses critical points on PET degradation, and their related experimental aspects, that include the control of physicochemical parameters. The search for, and engineering of, PET hydrolases, have been widely studied to achieve this, and several examples are discussed here. Many enzymes, from various microbial sources, have been studied and engineered, but recently true PET hydrolases (PETases), active at moderate temperatures, were reported. For a circular economy process, terephtalic acid (TPA) production is critical. Some thermophilic cutinases and engineered PETases have been reported to release terephthalic acid in significant amounts. Some bottlenecks in enzyme performance are discussed, including enzyme activity, thermal stability, substrate accessibility, PET microstructures, high crystallinity, molecular mass, mass transfer, and efficient conversion into reusable fragments.
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页数:24
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