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Production and characterization of cellulases and xylanases from the thermophilic ascomycete Thielavia terrestris 255B

机译:嗜热子囊霉Thielavia terrestris 255B的纤维素酶和木聚糖酶的生产和表征

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摘要

Initially, we studied the production of cellulases and xylanases after growth of T. terrestris 255B on various substrates in order to obtain maximum production of these enzymes. We used non-denaturing electrophoretic techniques to compare the profile of enzymes produced on the various substrates. We found that T. terrestris 255B produced two major and at least 5 minor endoglucanase components. We discussed the possibility that some of these components might exist as multi-enzyme complexes that were difficult to isolate in an intact form. We purified two cellobiohydrolases and one $beta$-glucosidase which were all partially characterized. One of the cellobiohydrolases (CBHII) seemed to be a major component of the cellulase system as it accounted for about 40.8% of the observed activity when crystalline cellulose was used as the substrate.;T. terrestris 255B produced two major forms of xylanases with pI's of 4.6 (xylanase I) and 6.1 (xylanase II). The latter enzyme could be purified to $>$99% homogeneity using anion-exchange chromatography and gel filtration. Xylanase II had a molecular mass of 25.7 kDa (SDS-PAGE) and optimal pH and temperature of 3.6-4.0 and 60-65$spcirc$C, respectively. The activity of xylanase II was very specific towards the hydrolysis of xylan and had extremely low activity on cellulose. Thus, as it had potential application for the pre-bleaching of kraft pulps, the characterization of this enzyme became the main focus of the work.;We used amino acid composition and partial amino acid sequencing to demonstrate that xylanase II belonged to a family of low molecular weight xylanases which had been previously designated the G family by Gilkes et al. (1991b). Currently, xylanase II is the only thermophilic xylanase that has been shown to belong to the G family of $beta$-1,4-glycanases. Xylanase II has one disulfide bridge and it is possible that this might account for its higher thermostability when compared to the other members of the G family.;We studied the mode of action of xylanase II and compared it with a 32-kDa xylanase derived from Thermoascus crustaceus. This latter enzyme is a thermophilic xylanase which appears to belong to the F family of $beta$-1,4-glucanases. Xylanase II was more efficient at solubilizing insoluble xylan and yielded hydrolysis products with higher degrees of polymerization than the 32-kDa xylanase. Xylanase II could not cleave xylotriose although it cleaved xylotetraose to xylobiose and xylotriose using a process involving transxylosidation. The 32-kDa xylanase could cleave both xylotriose and xylotetraose to xylobiose and xylose. Xylose was a major product of xylan hydrolysis by the 32-kDa xylanase while it was only a minor product when the hydrolysis was performed with xylanase II.;Although xylanase II and the 32-kDa xylanase seem to belong to different families of xylanases and had different modes of action, they did not show any cooperative hydrolysis action when they were added to xylans from various sources (cereal, hardwoods and softwoods). The profile of products obtained when the two thermophilic xylanases were used together was almost identical to the profile obtained when the 32-kDa xylanase acted alone. (Abstract shortened by UMI.).
机译:最初,我们研究了在各种底物上生长T. terrestris 255B后纤维素酶和木聚糖酶的产生,以获得这些酶的最大产量。我们使用非变性电泳技术来比较在各种底物上产生的酶的概况。我们发现T. terrestris 255B产生两个主要和至少五个次要内切葡聚糖酶成分。我们讨论了其中一些成分可能以多酶复合物的形式存在的可能性,这些复合物很难以完整形式分离。我们纯化了两个纤维二糖水解酶和一个$β$-葡萄糖苷酶,所有这些都部分表征。纤维二糖水解酶(CBHII)之一似乎是纤维素酶系统的主要组成部分,因为当使用结晶纤维素作为底物时,它占所观察到活性的约40.8%。 terrestris 255B产生了两种主要形式的木聚糖酶,pI分别为4.6(木聚糖酶I)和6.1(木聚糖酶II)。可以使用阴离子交换色谱和凝胶过滤将后一种酶纯化至≥99%的同质性。木聚糖酶II的分子量为25.7 kDa(SDS-PAGE),最佳pH和温度分别为3.6-4.0和60-65℃。木聚糖酶II的活性对木聚糖的水解非常特异,并且对纤维素的活性极低。因此,由于它在牛皮纸浆的预漂白中具有潜在的应用前景,该酶的表征成为研究的主要重点。我们通过氨基酸组成和部分氨基酸测序来证明木聚糖酶II属于木聚糖酶家族。低分子量木聚糖酶,先前已被Gilkes等人命名为G家族。 (1991b)。目前,木聚糖酶II是唯一被证明属于$ beta $ -1,4-聚糖酶G家族的嗜热木聚糖酶。木聚糖酶II具有一个二硫键,与G家族的其他成员相比,可能是其较高的热稳定性。;我们研究了木聚糖酶II的作用方式,并将其与衍生自32 kDa的木聚糖酶进行了比较。甲壳动物。后一种酶是嗜热木聚糖酶,似乎属于$ beta $ -1,4-葡聚糖酶的F家族。木聚糖酶II比32-kDa木聚糖酶更有效地溶解不溶性木聚糖,并产生具有更高聚合度的水解产物。木聚糖酶II不能切割木糖三糖,尽管它使用涉及木糖苷化的方法将木糖四糖切割成木糖和木糖。 32-kDa的木聚糖酶可以将木三糖和木四糖切割成木糖和木糖。木糖是32-kDa木聚糖酶水解木聚糖的主要产物,而当用木聚糖酶II水解时它只是次要产物。虽然木聚糖酶II和32-kDa木聚糖酶似乎属于木聚糖酶的不同家族,并且具有在不同的作用方式下,将它们从各种来源(谷物,硬木和软木)添加到木聚糖中时,没有表现出任何协同水解作用。两种嗜热木聚糖酶一起使用时获得的产物谱与32-kDa木聚糖酶单独作用时获得的谱几乎相同。 (摘要由UMI缩短。)。

著录项

  • 作者

    Gilbert, Michel.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Biochemistry.;Chemical engineering.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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