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首页> 外文期刊>Extremophiles: Life under extreme conditions >The thermophilic biomass-degrading fungus Thielavia terrestris Co3Bag1 produces a hyperthermophilic and thermostable beta-1,4-xylanase with exo- and endo-activity
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The thermophilic biomass-degrading fungus Thielavia terrestris Co3Bag1 produces a hyperthermophilic and thermostable beta-1,4-xylanase with exo- and endo-activity

机译:嗜热生物质降解真菌Thielavia Terrestris Co3bag1产生具有外胃和endo活性的高嗜热和耐热β-1,4-木聚糖酶

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摘要

A hyperthermophilic and thermostable xylanase of 82 kDa (TtXynA) was purified from the culture supernatant of T. terrestris Co3Bag1, grown on carboxymethyl cellulose (CMC), and characterized biochemically. TtXynA showed optimal xylanolytic activity at pH 5.5 and at 85 A degrees C, and retained more than 90% of its activity at a broad pH range (4.5-10). The enzyme is highly thermostable with a half-life of 23.1 days at 65 A degrees C, and active in the presence of several metal ions. Circular dichroism spectra strongly suggest the enzyme gains secondary structures when temperature increases. TtXynA displayed higher substrate affinity and higher catalytic efficiency towards beechwood xylan than towards birchwood xylan, oat-spelt xylan, and CMC. According to its final hydrolysis products, TtXynA displays endo-/exo-activity, yielded xylobiose, an unknown oligosaccharide containing about five residues of xylose and a small amount of xylose on beechwood xylan. Finally, this report represents the description of the first fungal hyperthermophilic xylanase which is produced by T. terrestris Co3Bag1. Since TtXynA displays relevant biochemical properties, it may be a suitable candidate for biotechnological applications carried out at high temperatures, like the enzymatic pretreatment of plant biomass for the production of bioethanol.
机译:从羧甲基纤维素(CMC)上生长的T. Terrestris Co3bag1的培养上清液中纯化了82kDa(Ttxyna)的超嗜热和热稳定的木聚糖酶,并表征了生物化学。 Ttxyna在pH5.5和85℃下显示最佳的木聚糖活性,并在宽pH范围内保留超过90%的活性(4.5-10)。酶高温稳定,在65℃下的半衰期为23.1天,在几种金属离子存在下活跃。圆形二色谱强烈建议酶在温度升高时获得二次结构。 Ttxyna向Beechwood木聚糖展示较高的底物亲和力和更高的催化效率,而不是朝向Birchwood Xylan,燕麦拼写的Xylan和CMC。根据其最终水解产物,Ttxyna显示出Endo- /外谱活性,产生Xylobiose,一种未知的寡糖,含有约5个木糖残留的木糖和少量木糖上的木糖。最后,该报告代表了由T. Terrestris Co3bag1产生的第一真菌超嗜热含二甲酶的描述。由于TTXyNA显示出相关的生化特性,因此可以是在高温下进行的生物技术应用的合适候选物,如植物生物质用于生产生物乙醇的酶促预处理。

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