Dilokpimol_2018_N.Biotechnol_41_9

Reference

Title : Fungal feruloyl esterases: Functional validation of genome mining based enzyme discovery including uncharacterized subfamilies - Dilokpimol_2018_N.Biotechnol_41_9
Author(s) : Dilokpimol A , Makela MR , Varriale S , Zhou M , Cerullo G , Gidijala L , Hinkka H , Bras JLA , Jutten P , Piechot A , Verhaert R , Hilden KS , Faraco V , de Vries RP
Ref : N Biotechnol , 41 :9 , 2018
Abstract :

Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis of ester bonds between a hydroxycinnamic (e.g. ferulic) acid and plant poly- or oligosaccharides. FAEs as auxiliary enzymes significantly assist xylanolytic and pectinolytic enzymes in gaining access to their site of action during biomass saccharification for biofuel and biochemical production. A limited number of FAEs have been functionally characterized compared to over 1000 putative fungal FAEs that were recently predicted by similarity-based genome mining, which divided phylogenetically into different subfamilies (SFs). In this study, 27 putative and six characterized FAEs from both ascomycete and basidiomycete fungi were selected and heterologously expressed in Pichia pastoris and the recombinant proteins biochemically characterized to validate the previous genome mining and phylogenetical grouping and to expand the information on activity of fungal FAEs. As a result, 20 enzymes were shown to possess FAE activity, being active towards pNP-ferulate and/or methyl hydroxycinnamate substrates, and covering 11 subfamilies. Most of the new FAEs showed activities comparable to those of previously characterized fungal FAEs.

PubMedSearch : Dilokpimol_2018_N.Biotechnol_41_9
PubMedID: 29174720
Gene_locus related to this paper: aspng-a0a100iph2

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Gene_locus aspng-a0a100iph2

Citations formats

Dilokpimol A, Makela MR, Varriale S, Zhou M, Cerullo G, Gidijala L, Hinkka H, Bras JLA, Jutten P, Piechot A, Verhaert R, Hilden KS, Faraco V, de Vries RP (2018)
Fungal feruloyl esterases: Functional validation of genome mining based enzyme discovery including uncharacterized subfamilies
N Biotechnol 41 :9

Dilokpimol A, Makela MR, Varriale S, Zhou M, Cerullo G, Gidijala L, Hinkka H, Bras JLA, Jutten P, Piechot A, Verhaert R, Hilden KS, Faraco V, de Vries RP (2018)
N Biotechnol 41 :9