Research Article

Directed Evolution of IsPETase via Error-Prone PCR for Enhanced Thermal Stability and Polyethylene Terephthalate Microplastic Degradation at Elevated Temperatures

87 reads
J Ong Appl Biochem Sci, 2026, 1 (1), 8-13, doi: , ISSN

Abstract

Polyethylene terephthalate (PET) accumulation represents a severe global environmental crisis, particularly in the form of microplastics. The PET-hydrolyzing enzyme from Ideonella sakaiensis (IsPETase) offers a promising biocatalytic solution, but its low thermal stability (melting temperature, Tm ≈ 48°C) limits its efficiency at elevated industrial process temperatures. In this study, we employed directed evolution via error-prone PCR to enhance the thermal stability of IsPETase for microplastic degradation. A library of IsPETase variants was generated and screened for residual esterase activity after incubation at 55°C. A double mutant, designated IsPETase-M2 (S121E/D186N), was identified, exhibiting a 9.2°C increase in melting temperature (Tm = 57.2°C) compared to the wild-type enzyme. IsPETase-M2 demonstrated a 4.1-fold increase in the degradation rate of PET microplastics at 50°C over a 72-hour period, releasing significantly higher levels of terephthalic acid (TPA) and mono-(2-hydroxyethyl) terephthalate (MHET). Structural modeling suggested that the introduced mutations stabilize flexible loop regions and optimize surface electrostatic interactions. This work highlights the potential of directed evolution to tailor plastic-degrading enzymes for robust bioremediation applications under thermally challenging conditions.

Keywords thermal stability microplastics directed evolution IsPETase Error-prone PCR
Authors 3

The team behind this paper

3 authors, 3 institutions.

This paper Indian Institute of Science — India Indian Institute of Sci… 1 author University of Cambridge — United Kingdom University of Cambridge 1 author Technical University of Munich — Germany Technical University of… 1 author Dr. Tariq Chen — corresponding author TC Dr. Tariq Chen ✉ Dr. Elena Haddad EH Dr. Elena Haddad Dr. Rajesh Rossi RR Dr. Rajesh Rossi

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Bibliographic Information

Dr. Tariq Chen, Dr. Elena Haddad, Dr. Rajesh Rossi, (2026). Directed Evolution of IsPETase via Error-Prone PCR for Enhanced Thermal Stability and Polyethylene Terephthalate Microplastic Degradation at Elevated Temperatures, Journal of Ongoing Applied Biochemical Sciences, 1(1): 8-13
Bibtex Citation
@article{dr._tariq_chen2026joabs,
author = {Dr. Tariq Chen and Dr. Elena Haddad and Dr. Rajesh Rossi},
title = {Directed Evolution of IsPETase via Error-Prone PCR for Enhanced Thermal Stability and Polyethylene Terephthalate Microplastic Degradation at Elevated Temperatures},
journal = {Journal of Ongoing Applied Biochemical Sciences},
year = {2026},
volume = {1},
number = {1},
pages = {8-13},
doi = {},
url = {https://scimatic.org/show_manuscript/8493}
}
APA Citation
Chen, D.T., Haddad, D.E., Rossi, D.R., (2026). Directed Evolution of IsPETase via Error-Prone PCR for Enhanced Thermal Stability and Polyethylene Terephthalate Microplastic Degradation at Elevated Temperatures. Journal of Ongoing Applied Biochemical Sciences, 1(1), 8-13. https://doi.org/

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