Perz_2015_Biomacromolecules_16_3889

Reference

Title : Biomimetic Approach to Enhance Enzymatic Hydrolysis of the Synthetic Polyester Poly(1,4-butylene adipate): Fusing Binding Modules to Esterases - Perz_2015_Biomacromolecules_16_3889
Author(s) : Perz V , Zumstein MT , Sander M , Zitzenbacher S , Ribitsch D , Guebitz GM
Ref : Biomacromolecules , 16 :3889 , 2015
Abstract :

Mimicking a concept of nature for the hydrolysis of biopolymers, the Thermobifida cellulosilytica cutinase 1 (Thc_Cut1) was fused to a polymer binding module (PBM) to enhance the hydrolysis of the polyester poly(1,4-butylene adipate) (PBA). Namely, the binding module of a polyhydroxyalkanoate depolymerase from Alcaligenes faecalis (Thc_Cut1_PBM) was attached to the cutinase via two different linker sequences varying in length. In order to investigate the adsorption behavior, catalytically inactive mutants both of Thc_Cut1 and Thc_Cut1_PBM were successfully constructed by site-directed mutagenesis of serine 131 to alanine. Quartz crystal microbalance with dissipation monitoring (QCM-D) analysis revealed that the initial mass increase during enzyme adsorption was larger for the inactive enzymes linked with the PBM as compared to the enzyme without the PBM. The hydrolysis rates of PBA were significantly enhanced when incubated with the active, engineered Thc_Cut1_PBM as compared to the native Thc_Cut1. Thc_Cut1_PBM completely hydrolyzed PBA thin films on QCM-D sensors within approximately 40 min, whereas twice as much time was required for the complete hydrolysis by the native Thc_Cut1.

PubMedSearch : Perz_2015_Biomacromolecules_16_3889
PubMedID: 26566664
Gene_locus related to this paper: thefu-q6a0i4

Related information

Gene_locus thefu-q6a0i4

Citations formats

Perz V, Zumstein MT, Sander M, Zitzenbacher S, Ribitsch D, Guebitz GM (2015)
Biomimetic Approach to Enhance Enzymatic Hydrolysis of the Synthetic Polyester Poly(1,4-butylene adipate): Fusing Binding Modules to Esterases
Biomacromolecules 16 :3889

Perz V, Zumstein MT, Sander M, Zitzenbacher S, Ribitsch D, Guebitz GM (2015)
Biomacromolecules 16 :3889