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来自小皮伞属的耐热木聚糖酶:纯化与特性研究

Thermostable xylanase from Marasmius sp.: purification and characterization.

作者信息

Ratanachomsri Ukrit, Sriprang Rutchadaporn, Sornlek Warasirin, Buaban Benchaporn, Champreda Verawat, Tanapongpipat Sutipa, Eurwilaichitr Lily

机构信息

National Center for Genetic Engineering and Biotechnology, 113 Thailand Science Park, Pathumthani 12120, Thailand.

出版信息

J Biochem Mol Biol. 2006 Jan 31;39(1):105-10. doi: 10.5483/bmbrep.2006.39.1.105.

Abstract

We have screened 766 strains of fungi from the BIOTEC Culture Collection (BCC) for xylanases working in extreme pH and/or high temperature conditions, the so-called extreme xylanases. From a total number of 32 strains producing extreme xylanases, the strain BCC7928, identified by using the internal transcribed spacer (ITS) sequence of rRNA to be a Marasmius sp., was chosen for further characterization because of its high xylanolytic activity at temperature as high as 90 degrees C. The crude enzyme possessed high thermostability and pH stability. Purification of this xylanase was carried out using an anion exchanger followed by hydrophobic interaction chromatography, yielding the enzyme with >90% homogeneity. The molecular mass of the enzyme was approximately 40 kDa. The purified enzyme retained broad working pH range of 4-8 and optimal temperature of 90 degrees C. When using xylan from birchwood as substrate, it exhibits Km and Vmax values of 2.6 +/- 0.6 mg/ml and 428 +/- 26 U/mg, respectively. The enzyme rapidly hydrolysed xylans from birchwood, beechwood, and exhibited lower activity on xylan from wheatbran, or celluloses from carboxymethylcellulose and Avicel. The purified enzyme was highly stable at temperature ranges from 50 to 70 degrees C. It retained 84% of its maximal activity after incubation in standard buffer containing 1% xylan substrate at 70 degrees C for 3 h. This thermostable xylanase should therefore be useful for several industrial applications, such as agricultural, food and biofuel.

摘要

我们从泰国国家生物技术中心培养物保藏中心(BIOTEC)的766株真菌中筛选了在极端pH值和/或高温条件下起作用的木聚糖酶,即所谓的极端木聚糖酶。在总共32株产生极端木聚糖酶的菌株中,通过使用rRNA的内部转录间隔区(ITS)序列鉴定为小皮伞属(Marasmius sp.)的BCC7928菌株,因其在高达90摄氏度的温度下具有高木聚糖分解活性而被选作进一步表征。粗酶具有高耐热性和pH稳定性。使用阴离子交换剂随后进行疏水相互作用色谱法对该木聚糖酶进行纯化,得到纯度>90%的酶。该酶的分子量约为40 kDa。纯化后的酶保留了4 - 8的宽工作pH范围和90摄氏度的最佳温度。以桦木木聚糖为底物时,其Km和Vmax值分别为2.6±0.6 mg/ml和428±26 U/mg。该酶能快速水解桦木、山毛榉木中的木聚糖,对麦麸木聚糖或羧甲基纤维素和微晶纤维素中的纤维素活性较低。纯化后的酶在50至70摄氏度的温度范围内高度稳定。在含有1%木聚糖底物的标准缓冲液中于70摄氏度孵育3小时后,它保留了其最大活性的84%。因此,这种耐热木聚糖酶应该可用于多种工业应用,如农业、食品和生物燃料领域。

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