A halotolerant type A feruloyl esterase from Pleurotus eryngii

An extracellular feruloyl esterase (PeFaeA) from the culture supernatant of Pleurotus eryngii was purified to homogeneity using cation exchange, hydrophobic interaction, and size exclusion chromatography. The length of the complete coding sequence of PeFaeA was determined to 1668 bp corresponding to...

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Veröffentlicht in:Fungal biology 2014-03, Vol.118 (3), p.348-357
Hauptverfasser: Nieter, Annabel, Haase-Aschoff, Paul, Linke, Diana, Nimtz, Manfred, Berger, Ralf G.
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Sprache:eng
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Zusammenfassung:An extracellular feruloyl esterase (PeFaeA) from the culture supernatant of Pleurotus eryngii was purified to homogeneity using cation exchange, hydrophobic interaction, and size exclusion chromatography. The length of the complete coding sequence of PeFaeA was determined to 1668 bp corresponding to a protein of 555 amino acids. The catalytic triad of Ser-Glu-His demonstrated the uniqueness of the enzyme compared to previously published FAEs. The purified PeFaeA was a monomer with an estimated molecular mass of 67 kDa. Maximum feruloyl esterase (FAE) activity was observed at pH 5.0 and 50 °C, respectively. Metal ions (5 mM), except Hg2+, had no significant influence on the enzyme activity. Substrate specificity profiling characterized the enzyme as a type A FAE preferring bulky natural substrates, such as feruloylated saccharides, rather than small synthetic ones. Km and kcat of the purified enzyme for methyl ferulate were 0.15 mM and 0.85 s−1. In the presence of 3 M NaCl activity of the enzyme increased by 28 %. PeFaeA alone released only little ferulic acid from destarched wheat bran (DSWB), whereas after addition of Trichoderma viride xylanase the concentration increased more than 20 fold. •A new feruloyl esterase from the basidiomycete P. eryngii was characterized.•A catalytic triad of Ser-Glu-His makes the enzyme unique.•The enzyme possessed a broad tolerance towards metal ions and organic solvents.•Increased activity in the presence of 3 M NaCl was observed.•Ferulic acid was released from destarched wheat bran and feruloylated saccharides.
ISSN:1878-6146
1878-6162
DOI:10.1016/j.funbio.2014.01.010