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Xylanase homology modeling using the inverse protein folding approach.

机译:使用反向蛋白质折叠方法的木聚糖酶同源性建模。

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摘要

Xylanase has been used in wood pulp bleaching in an effort to reduce chlorine release into the environment and pollution associated with paper production. The three-dimensional structure of xylanase is important to enable better understanding of the enzyme mechanism and to help design a more thermostable xylanase mutant. At the time this work was begun, there was no sequence homologous protein available for traditional sequence-based homology modeling. In order to circumvent this problem, the inverse protein folding approach was undertaken to find a suitable template structure. Model structures of Bacillus circulans xylanase were built based on the data-base search results of related proteins. The model structures were refined and compared to the recently solved xylanase X-ray crystal structure. The overall structural similarity between the theoretical model and experimental structure demonstrate the usefulness of this approach. Disagreement in folding topology, however, warrants further research into the inverse protein folding approach.
机译:木聚糖酶已用于木浆漂白,以减少氯释放到环境中和与造纸相关的污染。木聚糖酶的三维结构对于更好地理解酶的机理和帮助设计更热稳定的木聚糖酶突变很重要。在这项工作开始之时,尚无序列同源蛋白可用于传统的基于序列的同源性建模。为了解决这个问题,采用了反向蛋白质折叠方法来寻找合适的模板结构。基于相关蛋白的数据库搜索结果,建立了环状芽孢杆菌木聚糖酶的模型结构。模型结构进行了完善,并与最近解决的木聚糖酶X射线晶体结构进行了比较。理论模型和实验结构之间的总体结构相似性证明了这种方法的有效性。然而,在折叠拓扑学上的分歧需要对反向蛋白质折叠方法进行进一步的研究。

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