Clark_2024_ACS.Omega_9_44724

Reference

Title : Understanding the Catalytic Efficiency of Two Polyester Degrading Enzymes: An Experimental and Theoretical Investigation - Clark_2024_ACS.Omega_9_44724
Author(s) : Clark M , Tornesakis K , Konig G , Zahn M , Lichtenstein BR , Pickford AR , Cox PA
Ref : ACS Omega , 9 :44724 , 2024
Abstract :

The discovery of novel plastic degrading enzymes commonly relies on comparing features of the primary sequence to those of known plastic degrading enzymes. However, this approach cannot always guarantee success. This is exemplified by the different degradation rates of the two polymers poly(ethylene terephthalate) (PET) and polybutylene succinate (PBS) by two hydrolases: IsPETase from Ideonella sakaiensis and AdCut from Acidovorax delafieldii. Despite the enzymes showing a very high sequence identity of 82%, IsPETase shows significant hydrolysis activity for both polymers, whereas AdCut only shows significant hydrolysis activity for PBS. By solving the structure of AdCut using X-ray crystallography, and using this as the basis for computer simulations, comparisons are made between the differences in the calculated binding geometries and the catalytic results obtained from biochemical experiments. The results reveal that the low activity of AdCut toward PET can be explained by the low sampling of the productive conformation observed in the simulations. While the active site serine in IsPETase can closely encounter the PET carbonyl carbon, in AdCut it cannot: a feature that can be attributed to the shape of the catalytic binding pocket. These results yield an important insight into the design requirements for novel plastic degrading enzymes, as well as showing that computational methods can be used as a valuable tool in understanding the molecular basis for different hydrolysis activities in homologous polyesterase enzymes.

PubMedSearch : Clark_2024_ACS.Omega_9_44724
PubMedID: 39524671
Gene_locus related to this paper: acide-PBSA

Related information

Gene_locus acide-PBSA
Structure 8C65

Citations formats

Clark M, Tornesakis K, Konig G, Zahn M, Lichtenstein BR, Pickford AR, Cox PA (2024)
Understanding the Catalytic Efficiency of Two Polyester Degrading Enzymes: An Experimental and Theoretical Investigation
ACS Omega 9 :44724

Clark M, Tornesakis K, Konig G, Zahn M, Lichtenstein BR, Pickford AR, Cox PA (2024)
ACS Omega 9 :44724