DOI: 10.1093/bbb/zbag120 ISSN: 1347-6947

Purification and biochemical characterization of an extracellular endo xylanase from Phlebia acerina SF23754

Kenji Okamoto, Takato Yasutake, Daiki Hosoo, Toshifumi Mizuta, Tatsuya Kondo, Tatsuji Sakamoto

Abstract

Efficient lignocellulose conversion requires xylan-degrading enzymes that function without energy-intensive pretreatment. Although many xylanases have been reported, the biochemical diversity of Basidiomycota-derived enzymes remains unclear. Here, we purified and characterized the extracellular xylanase secreted by Phlebia acerina SF23754. The enzyme is a 44-kDa protein with an acidic pH optimum (pH 4.0) and an optimal temperature of 50 °C. It retained over 80% activity after 24 h at pH 3–9, showed moderate thermal stability, and was strongly inhibited by heavy metals, whereas EDTA had no effect. Tryptic peptides mapped to conserved GH10 motifs, identifying the enzyme as a basidiomycete GH10 xylanase. It hydrolyzed glucuronoxylans and arabinoxylans to produce short xylooligosaccharides without releasing xylose. Removal of arabinose substituents markedly enhanced arabinoxylan degradation, indicating a preference for less substituted xylan regions. These features highlight a GH10-type catalytic strategy in Basidiomycota and broaden understanding of fungal xylan degradation mechanisms.

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