首页> 外文期刊>The Journal of biological chemistry >Structural, Biochemical, and Computational Characterization of the Glycoside Hydrolase Family 7 Cellobiohydrolase of the Tree-killing Fungus Heterobasidion irregulare
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Structural, Biochemical, and Computational Characterization of the Glycoside Hydrolase Family 7 Cellobiohydrolase of the Tree-killing Fungus Heterobasidion irregulare

机译:糖苷水解酶评估的结构,生化和计算表征7树杀死真菌的纤维素水解酶Itegulare

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Root rot fungi of the Heterobasidion annosum complex are the most damaging pathogens in temperate forests, and the recently sequenced Heterobasidion irregulare genome revealed over 280 carbohydrate-active enzymes. Here, H. irregulare was grown on biomass, and the most abundant protein in the culture filtrate was identified as the only family 7 glycoside hydrolase in the genome, which consists of a single catalytic domain, lacking a linker and carbohydrate-binding module. The enzyme, HirCel7A, was characterized biochemically to determine the optimal conditions for activity. HirCel7A was crystallized and the structure, refined at 1.7 ? resolution, confirms that HirCel7A is a cellobiohydrolase rather than an endoglucanase, with a cellulose-binding tunnel that is more closed than Phanerochaete chrysosporium Cel7D and more open than Hypocrea jecorina Cel7A, suggesting intermediate enzyme properties. Molecular simulations were conducted to ascertain differences in enzyme-ligand interactions, ligand solvation, and loop flexibility between the family 7 glycoside hydrolase cellobiohydrolases from H. irregulare, H. jecorina, and P. chrysosporium. The structural comparisons and simulations suggest significant differences in enzyme-ligand interactions at the tunnel entrance in the ?7 to ?4 binding sites and suggest that a tyrosine residue at the tunnel entrance of HirCel7A may serve as an additional ligand-binding site. Additionally, the loops over the active site in H. jecorina Cel7A are more closed than loops in the other two enzymes, which has implications for the degree of processivity, endo-initiation, and substrate dissociation. Overall, this study highlights molecular level features important to understanding this biologically and industrially important family of glycoside hydrolases.
机译:异源性Annosum综合体的根腐真菌是温带森林中最有损的病原体,最近测序的异质均匀性基因组显示出超过280个碳水化合物活性酶。在这里,H. urgulare在生物质上生长,并且培养滤液中最丰富的蛋白质被鉴定为基因组中唯一的7种糖苷水解酶,其由单一催化结构域组成,缺乏连接和碳水化合物结合模块。酶,偏心7A,表征生物化学,以确定活动的最佳条件。 HIRCER7A已结晶,结构,精制为1.7?分辨率,证实HIRCER7A是一种纤维二氢酶而不是内切葡聚糖酶,其纤维素结合隧道比Phanerochaete Chrysporium Cel7D更闭合,并且比胚芽颈孢菌肌肉7A更开放,表明中间酶特性。进行了分子模拟,以确定来自H.Fregulare,H.JeCorina和P. Chrysporium的7种糖苷水解酶CellobioROL酶之间的酶 - 配体相互作用,配体溶剂化和环柔性的差异。结构性比较和仿真表明α7至α4末端位点处的隧道入口的酶 - 配体相互作用的显着差异,并表明HiCel7a的隧道入口处的酪氨酸残基可以用作另外的配体结合位点。另外,H. jecorina Cel7a的活性位点上的循环比其他两种酶中的环更闭合,这对处理率,内肠引发和底物解剖有影响。总体而言,本研究突出了分子水平的特征对于了解这一生物和工业上重要的糖苷水果酶。

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