Liu_2023_ChemSusChem_16_e202202019

Reference

Title : A Dual Fluorescence Assay Enables High-Throughput Screening for Poly(ethylene terephthalate) Hydrolases - Liu_2023_ChemSusChem_16_e202202019
Author(s) : Liu K , Xu Z , Zhao Z , Chen Y , Chai Y , Ma L , Li S
Ref : ChemSusChem , 16 :e202202019 , 2023
Abstract :

The drastically increasing consumption of petroleum-derived plastics hasserious environmental impacts and raises public concerns. Poly(ethylene terephthalate) (PET) is amongst the most extensively produced synthetic polymers. Enzymatic hydrolysis of PET recently emerged as an enticing path for plastic degradation and recycling. In-lab directed evolution has revealed the great potential of PET hydrolases (PETases). However, the time-consuming and laborious PETase assays hinder the identification of effective variants in large mutant libraries. Herein, we devise and validate a dual fluorescence-based high-throughput screening (HTS) assay for a representative IsPETase. The two-round HTS of a pilot library consisting of 2850 IsPETase variants yields six mutant IsPETases with 1.3-4.9 folds improved activities. Compared to the currently used structure- or computational redesign-based PETase engineering, this HTS approach provides a new strategy for discovery of new beneficial mutation patterns of PETases.

PubMedSearch : Liu_2023_ChemSusChem_16_e202202019
PubMedID: 36511949

Related information

Citations formats

Liu K, Xu Z, Zhao Z, Chen Y, Chai Y, Ma L, Li S (2023)
A Dual Fluorescence Assay Enables High-Throughput Screening for Poly(ethylene terephthalate) Hydrolases
ChemSusChem 16 :e202202019

Liu K, Xu Z, Zhao Z, Chen Y, Chai Y, Ma L, Li S (2023)
ChemSusChem 16 :e202202019