Kim_2024_Bioresour.Technol_403_130871

Reference

Title : Biodegradation of oxidized low density polyethylene by Pelosinus fermentans lipase - Kim_2024_Bioresour.Technol_403_130871
Author(s) : Kim DW , Lim ES , Lee GH , Son HF , Sung C , Jung JH , Park HJ , Gong G , Ko JK , Um Y , Han SO , Ahn JH
Ref : Bioresour Technol , 403 :130871 , 2024
Abstract :

Polyethylene (PE) exhibits high resistance to degradation, contributing to plastic pollution. PE discarded into the environment is photo-oxidized by sunlight and oxygen. In this study, a key enzyme capable of degrading oxidized PE is reported for the first time. Twenty different enzymes from various lipase families were evaluated for hydrolytic activity using substrates mimicking oxidized PE. Among them, Pelosinus fermentans lipase 1 (PFL1) specifically cleaved the ester bonds within the oxidized carbon-carbon backbone. Moreover, PFL1 (6 microM) degraded oxidized PE film, reducing the weight average and number average molecular weights by 44.6 and 11.3 %, respectively, within five days. Finally, structural analysis and molecular docking simulations were performed to elucidate the degradation mechanism of PFL1. The oxidized PE-degrading enzyme reported here will provide the groundwork for advancing PE waste treatment technology and for engineering microbes to repurpose PE waste into valuable chemicals.

PubMedSearch : Kim_2024_Bioresour.Technol_403_130871
PubMedID: 38782190

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Citations formats

Kim DW, Lim ES, Lee GH, Son HF, Sung C, Jung JH, Park HJ, Gong G, Ko JK, Um Y, Han SO, Ahn JH (2024)
Biodegradation of oxidized low density polyethylene by Pelosinus fermentans lipase
Bioresour Technol 403 :130871

Kim DW, Lim ES, Lee GH, Son HF, Sung C, Jung JH, Park HJ, Gong G, Ko JK, Um Y, Han SO, Ahn JH (2024)
Bioresour Technol 403 :130871