Feng_2024_Int.J.Biol.Macromol__133049

Reference

Title : Non-ionic surfactant PEG: Enhanced cutinase-catalyzed hydrolysis of polyethylene terephthalate - Feng_2024_Int.J.Biol.Macromol__133049
Author(s) : Feng J , Li H , Lu Y , Li R , Cavaco-Paulo A , Fu J
Ref : Int J Biol Macromol , :133049 , 2024
Abstract :

To enhance the enzymatic digestibility of polyethylene terephthalate (PET), which is highly oriented and crystallized, a polyethylene glycol (PEG) surfactant of varying molecular weights was utilized to improve the stability of mutant cutinase from Humicola insolens (HiC) and to increase the accessibility of the enzyme to the substrate. Leveraging the optimal conditions for HiC hydrolysis of PET, the introduction of 1 % w/v PEG significantly increased the yield of PET hydrolysis products. PEG600 was particularly effective, increasing the yield by 64.58 % compared to using HiC alone. Moreover, the mechanisms by which PEG600 and PEG6000 enhance enzyme digestion were extensively examined using circular dichroism and fluorescence spectroscopy. The results from CD and fluorescence analyses indicated that PEG alters the protein conformation, thereby affecting the catalytic effect of the enzyme. Moreover, PEG improved the affinity between HiC and PET by lowering the surface tension of the solution, substantially enhancing PET hydrolysis. This study suggests that PEG holds considerable promise as an enzyme protector, significantly aiding in the hydrophilic modification and degradation of PET in an environmentally friendly and sustainable manner.

PubMedSearch : Feng_2024_Int.J.Biol.Macromol__133049
PubMedID: 38857727

Related information

Citations formats

Feng J, Li H, Lu Y, Li R, Cavaco-Paulo A, Fu J (2024)
Non-ionic surfactant PEG: Enhanced cutinase-catalyzed hydrolysis of polyethylene terephthalate
Int J Biol Macromol :133049

Feng J, Li H, Lu Y, Li R, Cavaco-Paulo A, Fu J (2024)
Int J Biol Macromol :133049