Burgin_2024_Commun.Chem_7_65

Reference

Title : The reaction mechanism of the Ideonella sakaiensis PETase enzyme - Burgin_2024_Commun.Chem_7_65
Author(s) : Burgin T , Pollard BC , Knott BC , Mayes HB , Crowley MF , McGeehan JE , Beckham GT , Woodcock HL
Ref : Commun Chem , 7 :65 , 2024
Abstract :

Polyethylene terephthalate (PET), the most abundantly produced polyester plastic, can be depolymerized by the Ideonella sakaiensis PETase enzyme. Based on multiple PETase crystal structures, the reaction has been proposed to proceed via a two-step serine hydrolase mechanism mediated by a serine-histidine-aspartate catalytic triad. To elucidate the multi-step PETase catalytic mechanism, we use transition path sampling and likelihood maximization to identify optimal reaction coordinates for the PETase enzyme. We predict that deacylation is likely rate-limiting, and the reaction coordinates for both steps include elements describing nucleophilic attack, ester bond cleavage, and the "moving-histidine" mechanism. We find that the flexibility of Trp185 promotes the reaction, providing an explanation for decreased activity observed in mutations that restrict Trp185 motion. Overall, this study uses unbiased computational approaches to reveal the detailed reaction mechanism necessary for further engineering of an important class of enzymes for plastics bioconversion.

PubMedSearch : Burgin_2024_Commun.Chem_7_65
PubMedID: 38538850
Gene_locus related to this paper: idesa-peth

Related information

Gene_locus idesa-peth

Citations formats

Burgin T, Pollard BC, Knott BC, Mayes HB, Crowley MF, McGeehan JE, Beckham GT, Woodcock HL (2024)
The reaction mechanism of the Ideonella sakaiensis PETase enzyme
Commun Chem 7 :65

Burgin T, Pollard BC, Knott BC, Mayes HB, Crowley MF, McGeehan JE, Beckham GT, Woodcock HL (2024)
Commun Chem 7 :65