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Expression of recombinant Thermomonospora fusca xylanase A in Pichia pastoris and xylooligosaccharides released from xylans by it
Authors:Jian-Yi Sun  Ming-Qi Liu  Xiao-Yan Weng  Li-Chun Qian  Sai-Hong Gu
Affiliation:1. Microbiology Division, Key Laboratory of Molecular Animal Nutrition, Ministry of Education, College of Animal Science, Zhejiang University, Hangzhou 310029, China;2. College of Life Science, Zhejiang University, Hangzhou 310029, China;3. Shanghai Academy of Agricultural Sciences, Shanghai 201106, China
Abstract:The mature peptide of Thermomonospora fusca xylanase A (TfxA) was successfully expressed in Pichia pastoris under the control of AOX1 promoter. The activity of recombinant T. fusca xylanase A (reTfxA) in culture supernatant was 117.3 ± 2.4 U/mg, which is 3 times higher than that of the native TfxA. The optimal temperature and pH for reTfxA were 60 °C and 6.0, respectively. When treated at 70 °C and pH 6.0 for 2 min, the residual activity of the reTfxA was 70%. The reTfxA was very stable over a wide pH range (5.0–9.0). After incubation over pH 5.0–9.0 at 25 °C for 1 h, all the residual activity of reTfxA was over 80%. The Km and kcat values for reTfxA were 2.45 mg/ml and 139 s−1, respectively. HPLC analysis revealed that xylobiose (X2) was the main hydrolysis product released from birchwood xylan and wheat bran insoluble xylan by reTfxA. Hydrolysis results of xylooligosaccharides showed that reTfxA was an endo-acting xylanase and xylobiose, xylotriose (X3), xylotetraose (X4), xylopentaose (X5), and xylohexaose (X6) could be hydrolysed. This is the first report on the expression of reTfxA in yeast and on the determining and quantifying of the hydrolysis products released from xylans and xylooligosaccharides by reTfxA.
Keywords:TfxA, Thermomonospora fusca xylanase A   reTfxA, recombinant TfxA expressed in P. pastoris   tfx, the gene encoding mature TfxA   LB, Luria&ndash  Bertani   HPLC, high-performance liquid chromatography   X, xylose   X2, xylobiose   X3, xylotriose   X4, xylotetraose   X5, xylopentaose   X6, xylohexaose   AFM, atomic force microscope   DP, degree of polymerization   XOs, xylooligosaccharides
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