首页> 外文期刊>Applied Microbiology >Characterization of a Broad-Specificity β-Glucanase Acting on β-(1,3)-, β-(1,4)-, and β-(1,6)-Glucans That Defines a New Glycoside Hydrolase Family
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Characterization of a Broad-Specificity β-Glucanase Acting on β-(1,3)-, β-(1,4)-, and β-(1,6)-Glucans That Defines a New Glycoside Hydrolase Family

机译:作用于β-(1,3)-,β-(1,4)-和β-(1,6)-葡聚糖的广谱β-葡聚糖酶的表征,该葡聚糖定义了新的糖苷水解酶家族

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Here we report the cloning of the Pa_3_10940 gene from the coprophilic fungus Podospora anserina , which encodes a C-terminal family 1 carbohydrate binding module (CBM1) linked to a domain of unknown function. The function of the gene was investigated by expression of the full-length protein and a truncated derivative without the CBM1 domain in the yeast Pichia pastoris . Using a library of polysaccharides of different origins, we demonstrated that the full-length enzyme displays activity toward a broad range of β-glucan polysaccharides, including laminarin, curdlan, pachyman, lichenan, pustulan, and cellulosic derivatives. Analysis of the products released from polysaccharides revealed that this β-glucanase is an exo-acting enzyme on β-(1,3)- and β-(1,6)-linked glucan substrates and an endo-acting enzyme on β-(1,4)-linked glucan substrates. Hydrolysis of short β-(1,3), β-(1,4), and β-(1,3)/β-(1,4) gluco-oligosaccharides confirmed this striking feature and revealed that the enzyme performs in an exo-type mode on the nonreducing end of gluco-oligosaccharides. Excision of the CBM1 domain resulted in an inactive enzyme on all substrates tested. To our knowledge, this is the first report of an enzyme that displays bifunctional exo-β-(1,3)/(1,6) and endo-β-(1,4) activities toward beta-glucans and therefore cannot readily be assigned to existing Enzyme Commission groups. The amino acid sequence has high sequence identity to hypothetical proteins within the fungal taxa and thus defines a new family of glycoside hydrolases, the GH131 family.
机译:在这里,我们报告了从亲肠真菌Podospora anserina克隆Pa_3_10940基因,该基因编码与未知功能域连接的C末端家族1碳水化合物结合模块(CBM1)。通过在酵母毕赤酵母中表达全长蛋白和不具有CBM1结构域的截短的衍生物来研究基因的功能。使用不同来源的多糖文库,我们证明了全长酶显示出对广泛的β-葡聚糖多糖的活性,其中包括层粘连蛋白,柯德兰,开普曼,地衣聚糖,脓疱素和纤维素衍生物。对从多糖中释放的产物的分析表明,这种β-葡聚糖酶是在β-(1,3)-和β-(1,6)-连接的葡聚糖底物上的外显作用酶,也是在β-( 1,4)-连接的葡聚糖底物。短的β-(1,3),β-(1,4)和β-(1,3)/β-(1,4)葡萄糖寡糖的水解证实了这一惊人特征,并揭示了该酶在糖寡糖非还原端的外显子型模式。 CBM1结构域的切除导致所有测试底物上的酶失活。就我们所知,这是一种酶的首次报道,该酶显示出对β-葡聚糖具有双功能的exo-β-(1,3)/(1,6)和内体β-(1,4)活性,因此不易被发现。分配给现有的酶委员会组。氨基酸序列与真菌类群中的假设蛋白质具有高度序列同一性,因此定义了一个新的糖苷水解酶家族,即GH131家族。

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