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Updated: Aug 23, 2026

Defining Substrate Specificities for Lipase and Phospholipase Candidates
Published on: November 23, 2016
Structure-Guided Extremophile Genome Mining Expands the PETase Landscape and Reveals PET-Hydrolysing True Lipase
Rubén Muñoz-Tafalla1,2, José M González-Romero1,3, Paula Vidal3
1PhD Program in Biotecnology, Faculty of Pharmacy and Food Sciences, Universitat de Barcelona (UB), Barcelona, Spain.
None:
Poly(ethylene terephthalate) (PET) hydrolases are enzymes primarily within the polyesterase-cutinase branch of the α/β-hydrolase superfamily, whereas the contribution of true lipases to PET hydrolysis remains poorly explored. Here, we report the genome mining results of 18,082 extremophilic microorganisms, combined with structural modelling, enzyme-substrate simulations and experimental validation, which enables the identification of PET-active true lipases. Two true lipases, LipBv and LipSh1, hydrolyse PET substrates and homologous enzymes within their respective clusters also retain PET-hydrolysing activity, supporting the existence of specific lipase lineages associated with PET hydrolysis. Structural analyses suggest that differences in loop organization and active-site accessibility may contribute to the observed PET-hydrolysing activity and hydrolysis product profiles. These lipase lineages clustered separately from 1322 putative PETase homologues from the same extremophile genomes, while all groups remained distinct from previously characterized PETases. These findings expand the evolutionary diversity of PET-hydrolysing enzymes in extremophiles.
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