Title : Fusion of binding domains to Thermobifida cellulosilytica cutinase to tune sorption characteristics and enhancing PET hydrolysis - Ribitsch_2013_Biomacromolecules_14_1769 |
Author(s) : Ribitsch D , Yebra AO , Zitzenbacher S , Wu J , Nowitsch S , Steinkellner G , Greimel K , Doliska A , Oberdorfer G , Gruber CC , Gruber K , Schwab H , Stana-Kleinschek K , Herrero Acero E , Guebitz GM |
Ref : Biomacromolecules , 14 :1769 , 2013 |
Abstract :
A cutinase from Thermomyces cellullosylitica (Thc_Cut1), hydrolyzing the synthetic polymer polyethylene terephthalate (PET), was fused with two different binding modules to improve sorption and thereby hydrolysis. The binding modules were from cellobiohydrolase I from Hypocrea jecorina (CBM) and from a polyhydroxyalkanoate depolymerase from Alcaligenes faecalis (PBM). Although both binding modules have a hydrophobic nature, it was possible to express the proteins in E. coli . Both fusion enzymes and the native one had comparable kcat values in the range of 311 to 342 s(-1) on pNP-butyrate, while the catalytic efficiencies kcat/Km decreased from 0.41 s(-1)/ muM (native enzyme) to 0.21 and 0.33 s(-1)/muM for Thc_Cut1+PBM and Thc_Cut1+CBM, respectively. The fusion enzymes were active both on the insoluble PET model substrate bis(benzoyloxyethyl) terephthalate (3PET) and on PET although the hydrolysis pattern was differed when compared to Thc_Cut1. Enhanced adsorption of the fusion enzymes was visible by chemiluminescence after incubation with a 6xHisTag specific horseradish peroxidase (HRP) labeled probe. Increased adsorption to PET by the fusion enzymes was confirmed with Quarz Crystal Microbalance (QCM-D) analysis and indeed resulted in enhanced hydrolysis activity (3.8x for Thc_Cut1+CBM) on PET, as quantified, based on released mono/oligomers. |
PubMedSearch : Ribitsch_2013_Biomacromolecules_14_1769 |
PubMedID: 23718548 |
Gene_locus related to this paper: thefu-q6a0i4 |
Substrate | BETEB |
Gene_locus | thefu-q6a0i4 |
Ribitsch D, Yebra AO, Zitzenbacher S, Wu J, Nowitsch S, Steinkellner G, Greimel K, Doliska A, Oberdorfer G, Gruber CC, Gruber K, Schwab H, Stana-Kleinschek K, Herrero Acero E, Guebitz GM (2013)
Fusion of binding domains to Thermobifida cellulosilytica cutinase to tune sorption characteristics and enhancing PET hydrolysis
Biomacromolecules
14 :1769
Ribitsch D, Yebra AO, Zitzenbacher S, Wu J, Nowitsch S, Steinkellner G, Greimel K, Doliska A, Oberdorfer G, Gruber CC, Gruber K, Schwab H, Stana-Kleinschek K, Herrero Acero E, Guebitz GM (2013)
Biomacromolecules
14 :1769