首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Inter-domain Synergism Is Required for Efficient Feeding of Cellulose Chain into Active Site of Cellobiohydrolase Cel7A
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Inter-domain Synergism Is Required for Efficient Feeding of Cellulose Chain into Active Site of Cellobiohydrolase Cel7A

机译:纤维素链有效喂入纤维二糖水解酶Cel7A的活性位点需要域间协同作用。

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摘要

Structural polysaccharides like cellulose and chitin are abundant and their enzymatic degradation to soluble sugars is an important route in green chemistry. Processive glycoside hydrolases (GHs), like cellobiohydrolase Cel7A of Trichoderma reesei (TrCel7A) are key components of efficient enzyme systems. TrCel7A consists of a catalytic domain (CD) and a smaller carbohydrate-binding module (CBM) connected through the glycosylated linker peptide. A tunnel-shaped active site rests in the CD and contains 10 glucose unit binding sites. The active site of TrCel7A is lined with four Trp residues with two of them, Trp-40 and Trp-38, in the substrate binding sites near the tunnel entrance. Although addressed in numerous studies the elucidation of the role of CBM and active site aromatics has been obscured by a complex multistep mechanism of processive GHs. Here we studied the role of the CBM-linker and Trp-38 of TrCel7A with respect to binding affinity, on- and off-rates, processivity, and synergism with endoglucanase. The CBM-linker increased the on-rate and substrate affinity of the enzyme. The Trp-38 to Ala substitution resulted in increased off-rates and decreased processivity. The effect of the Trp-38 to Ala substitution on on-rates was strongly dependent on the presence of the CBM-linker. This compensation between CBM-linker and Trp-38 indicates synergism between CBM-linker and CD in feeding the cellulose chain into the active site. The inter-domain synergism was pre-requisite for the efficient degradation of cellulose in the presence of endoglucanase.
机译:结构性多糖(如纤维素和甲壳质)丰富,它们被酶降解为可溶性糖是绿色化学中的重要途径。像里氏木霉的纤维二糖水解酶Cel7A(TrCel7A)一样,进行性糖苷水解酶(GHs)是高效酶系统的关键组成部分。 TrCel7A由催化结构域(CD)和通过糖基化接头肽连接的较小的碳水化合物结合模块(CBM)组成。 CD中有一个隧道状的活性位点,包含10个葡萄糖单元结合位点。 TrCel7A的活性位点在靠近通道入口的底物结合位点中衬有四个Trp残基,其中两个Trp-40和Trp-38。尽管在众多研究中都进行了研究,但由于加工性GH的复杂的多步机理,对CBM和活性位点芳烃的作用的阐明已变得模糊。在这里,我们研究了TrCel7A的CBM接头和Trp-38在结合亲和力,接通和断开速率,持续性以及与内切葡聚糖酶的协同作用方面的作用。 CBM接头增加了酶的开启速率和底物亲和力。 Trp-38取代Ala导致解离速率增加和生产率下降。 Trp-38取代Ala对接通速率的影响在很大程度上取决于CBM接头的存在。 CBM接头和Trp-38之间的这种补偿表明CBM接头和CD之间的协同作用,可将纤维素链喂入活性位点。在存在内切葡聚糖酶的情况下,域间协同作用是有效降解纤维素的先决条件。

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