Perz_2016_N.Biotechnol_33_295

Reference

Title : Substrate specificities of cutinases on aliphatic-aromatic polyesters and on their model substrates - Perz_2016_N.Biotechnol_33_295
Author(s) : Perz V , Bleymaier K , Sinkel C , Kueper U , Bonnekessel M , Ribitsch D , Guebitz GM
Ref : N Biotechnol , 33 :295 , 2016
Abstract :

The enzymatic hydrolysis of the biodegradable polyester ecoflex and of a variety of oligomeric and polymeric ecoflex model substrates was investigated. For this purpose, substrate specificities of two enzymes of typical compost inhabitants, namely a fungal cutinase from Humicola insolens (HiC) and a bacterial cutinase from Thermobifida cellulosilytica (Thc_Cut1) were compared. Model substrates were systematically designed with variations of the chain length of the alcohol and the acid as well as with varying content of the aromatic constituent terephthalic acid (Ta). HPLC/MS identification and quantification of the hydrolysis products terephthalic acid (Ta), benzoic acid (Ba), adipic acid (Ada), mono(4-hydroxybutyl) terephthalate (BTa), mono-(2-hydroxyethyl) terephthalate (ETa), mono-(6-hydroxyhexyl) terephthalate (HTa) and bis(4-hydroxybutyl) terephthalate (BTaB) indicated that these enzymes indeed hydrolyze the tested esters. Shorter terminal chain length acids but longer chain length alcohols in oligomeric model substrates were generally hydrolyzed more efficiently. Thc_Cut1 hydrolyzed aromatic ester bonds more efficiently than HiC resulting in up to 3-fold higher concentrations of the monomeric hydrolysis product Ta. Nevertheless, HiC exhibited a higher overall hydrolytic activity on the tested polyesters, resulting in 2-fold higher concentration of released molecules. Thermogravimetry and differential scanning calorimetry (TG-DSC) of the polymeric model substrates revealed a general trend that a lower difference between melting temperature (Tm) and the temperature at which the enzymatic degradation takes place resulted in higher susceptibility to enzymatic hydrolysis.

PubMedSearch : Perz_2016_N.Biotechnol_33_295
PubMedID: 26594021
Gene_locus related to this paper: humin-cut , thefu-q6a0i4

Related information

Inhibitor BTa
Substrate DaBTaBDa    TdaBTaBTda    HaBTaBHa    BHBT    HTaH    3-PBT    BTa    BETEB
Gene_locus humin-cut    thefu-q6a0i4

Citations formats

Perz V, Bleymaier K, Sinkel C, Kueper U, Bonnekessel M, Ribitsch D, Guebitz GM (2016)
Substrate specificities of cutinases on aliphatic-aromatic polyesters and on their model substrates
N Biotechnol 33 :295

Perz V, Bleymaier K, Sinkel C, Kueper U, Bonnekessel M, Ribitsch D, Guebitz GM (2016)
N Biotechnol 33 :295