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A third type of PETase from the marine Halopseudomonas lineage

Title data

Turak, Onur ; Gagsteiger, Andreas ; Upadhyay, Ashank ; Kriegel, Mark ; Salein, Peter ; Böhnke-Brandt, Stefanie ; Agarwal, Seema ; Borchert, Erik ; Höcker, Birte:
A third type of PETase from the marine Halopseudomonas lineage.
In: Protein Science. Vol. 34 (2025) Issue 10 . - e70305.
ISSN 1469-896X
DOI: https://doi.org/10.1002/pro.70305

Official URL: Volltext

Project information

Project title:
Project's official title
Project's id
PLASTISEA - Meeresplastik als Quelle für neue und innovative biotechnologische Strategien
No information
SFB 1357: MIKROPLASTIK – Gesetzmäßigkeiten der Bildung, des Transports, des physikalisch-chemischen Verhaltens sowie der biologischen Effekte: Von Modell- zu komplexen Systemen als Grundlage neuer Lösungsansätze
391977956
Open Access Publizieren
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Project financing: Bundesministerium für Bildung und Forschung
Deutsche Forschungsgemeinschaft

Abstract in another language

The enzymatic degradation of polyethylene terephthalate (PET) offers a sustainable solution for PET recycling. Over the past two decades, more than 100 PETases have been characterized, primarily exhibiting similar sequences and structures. Here, we report PET-degrading α/β hydrolases, including HaloPETase1 from the marine Halopseudomonas lineage, thereby extending the narrow sequence space by novel features at the active site. The crystal structure of HaloPETase1 was determined to a resolution of 1.16 Å, revealing a unique active site architecture and a lack of the canonical π-stacking clamp found in PETases so far. Further, variations in active site composition and loop structures were observed. Additionally, we found five more enzymes from the same lineage, two of which have a high similarity to type IIa bacterial PETases, while the other three resemble HaloPETase1. All these enzymes exhibited high salt tolerance ranging from 2.5 to 5 M NaCl, leading to higher total product releases upon PET degradation at 40 or 50°C. Based on these findings, we propose an extension of the existing PETase classification system to include type III PETases.

Further data

Item Type: Article in a journal
Refereed: Yes
Keywords: classification; Halopseudomonas; hydrolases; PET degradation; PETase; polyethylene; structure–function relationship; terephthalate
Institutions of the University: Faculties
Faculties > Faculty of Biology, Chemistry and Earth Sciences
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Macromolecular Chemistry II
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Macromolecular Chemistry II > Chair Macromolecular Chemistry II - Univ.-Prof. Dr. Andreas Greiner
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Biochemistry III - Protein Design > Chair Biochemistry III - Protein Design - Univ.-Prof. Dr. Birte Höcker
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Biochemistry III - Protein Design
Research Institutions > Collaborative Research Centers, Research Unit > SFB 1357 - MIKROPLASTIK
Research Institutions
Research Institutions > Collaborative Research Centers, Research Unit
Result of work at the UBT: Yes
DDC Subjects: 500 Science > 500 Natural sciences
500 Science > 530 Physics
500 Science > 540 Chemistry
500 Science > 550 Earth sciences, geology
500 Science > 570 Life sciences, biology
Date Deposited: 30 Sep 2025 08:58
Last Modified: 27 Feb 2026 06:34
URI: https://eref.uni-bayreuth.de/id/eprint/94793