毕赤酵母
水解
酶动力学
化学
半纤维素
糖苷水解酶
异源表达
水稻
立体化学
酶
生物化学
重组DNA
活动站点
基因
作者
Katarzyna Sala,Salila Pengthaisong,Chamaipon Beagbandee,James R. Ketudat Cairns
标识
DOI:10.1021/acs.jafc.4c13281
摘要
Plant β-xylosidases are less well characterized for hemicellulose degradation than their microbial counterparts. To address this, a broadly expressed rice (Oryza sativa) glycoside hydrolase family 3 (GH3) β-xylosidase designated OsXyl1 was expressed in heterologous Pichia pastoris. OsXyl1 showed maximal enzyme activity at pH 4.0 and 60 °C. It was relatively stable at 30-50 °C. It hydrolyzed 4NP-β-d-xylopyranoside (4NPXyl) and β-1,4-linked xylooligosaccharides (XOS) with degrees of polymerization (DP) of 2-6. OsXyl1 hydrolylsis of 4NPXyl was much more rapid and specific than that of other 4NP glycosides with an apparent kcat/Km value of 19.0 mM-1 s-1. OsXyl1 had similar specificity toward XOS having DP values of 2-5 with apparent kcat/Km values of 2.6-4.2 mM-1 s-1. OsXyl1 was also efficient at transglycosylating short alcohols with 4NPXyl and XOS xylosyl donors. Therefore, rice OsXyl1 β-xylosidase may function in recycling of xylans in plant cell wall recycling and it may be applied for transglycosylation of alcohol acceptors.
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