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How family 26 glycoside hydrolases orchestrate catalysis on different polysaccharides: structure and activity of a clostridium thermocellum lichenase, CtLic26A

机译:26族糖苷水解酶如何协调对不同多糖的催化:热纤梭菌地衣酶CtLic26A的结构和活性

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摘要

ne of the most intriguing features of the 90 glycoside hydrolase families (GHs) is the range of specificities displayed by different members of the same family, whereas the catalytic apparatus and mechanism are often invariant. Family GH26 predominantly comprises beta-1,4 mannanases; however, a bifunctional Clostridium thermocellum GH26 member (hereafter CtLic26A) displays a markedly different specificity. We show that CtLic26A is a lichenase, specific for mixed (Glcbeta1,4Glcbeta1,4Glcbeta1,3)n oligo- and polysaccharides, and displays no activity on manno-configured substrates or beta-1,4-linked homopolymers of glucose or xylose. The three-dimensional structure of the native form of CtLic26A has been solved at 1.50-A resolution, revealing a characteristic (beta/alpha)8 barrel with Glu-109 and Glu-222 acting as the catalytic acid/base and nucleophile in a double-displacement mechanism. The complex with the competitive inhibitor, Glc-beta-1,3-isofagomine (Ki 1 microm), at 1.60 A sheds light on substrate recognition in the -2 and -1 subsites and illuminates why the enzyme is specific for lichenan-based substrates. Hydrolysis of beta-mannosides by GH26 members is thought to proceed through transition states in the B2,5 (boat) conformation in which structural distinction of glucosides versus mannosides reflects not the configuration at C2 but the recognition of the pseudoaxial O3 of the B2,5 conformation. We suggest a different conformational itinerary for the GH26 enzymes active on gluco-configured substrates.
机译:90个糖苷水解酶家族(GHs)最引人入胜的特征之一是同一家族的不同成员所表现出的特异性范围,而催化装置和机理通常是不变的。 GH26家族主要包含β-1,4甘露聚糖酶;但是,双功能热纤梭菌GH26成员(以下称CtLic26A)显示出明显不同的特异性。我们显示CtLic26A是一种地衣酶,特定于混合(Glcbeta1,4Glcbeta1,4Glcbeta1,3)n寡糖和多糖,并且对甘露糖构型的底物或葡萄糖或木糖的beta-1,4连接的均聚物无活性。 CtLic26A天然形式的三维结构已在1.50-A分辨率下进行了解析,揭示了具有特征性的(beta / alpha)8桶,其中Glu-109和Glu-222双重充当催化酸/碱和亲核试剂位移机制。与竞争性抑制剂Glc-beta-1,3-isofagomine(Ki 1 microm)在1.60 A处形成的复合物揭示了-2和-1亚位点的底物识别,并阐明了为什么该酶对基于地衣聚糖的底物具有特异性。 GH26成员水解β-甘露糖苷的过程被认为是通过B2,5(船形)构象中的过渡态进行的,其中糖苷与甘露糖苷的结构区别并不反映C2处的构型,而是对B2,5假轴O3的识别。构象。我们建议在葡萄糖配置的底物上活跃的GH26酶不同的构象路线。

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