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一株嗜热 GH11/GH10 木聚糖降解嵌合酶的构建及性质研究。

Development and characterization of a thermostable GH11/GH10 xylan degrading chimeric enzyme.

机构信息

Protein Research Center, Shahid Beheshti University G.C., Tehran, Iran.

Protein Research Center, Shahid Beheshti University G.C., Tehran, Iran.

出版信息

Enzyme Microb Technol. 2021 Sep;149:109854. doi: 10.1016/j.enzmictec.2021.109854. Epub 2021 Jun 16.

Abstract

Xylanases are categorized into different family groups, two of which are glycoside hydrolases 10 (GH10) and 11 (GH11) families. These well-characterized xylanases demonstrate different modes of action in hydrolysis of xylans. Imitating certain types of microorganisms to produce bifunctional enzymes such as engineered xylanases has gained considerable attention among researchers. In this study, a recombinant chimeric enzyme (X11-10) was designed by fusing two thermostable xylanases through a peptide linker. The recombinant parental enzymes, xylanase 10 from fungus Bispora sp. MEY-1 (X10) and xylanase 11 from bacterium Thermobacillus xylanilyticus (X11), and their chimera were successfully expressed in Pichia pastoris (P. pastoris), purified, and characterized. Being active over a wide pH range, X11-10 chimera showed higher thermal stability, possessed a lower K, and a higher catalytic efficiency (k/K) in comparison to the parental enzymes. Also, molecular dynamics simulation (MDS) of X11-10 revealed that its active site residues were free to interact with substrate. This novel chimeric xylanase may have potential applications in different industrial processes since it can substitute two separate enzymes and therefore minimize the production costs.

摘要

木聚糖酶被分为不同的家族,其中两个是糖苷水解酶 10(GH10)和 11(GH11)家族。这些特征明确的木聚糖酶在水解木聚糖方面表现出不同的作用模式。模仿某些类型的微生物来产生双功能酶,如工程化木聚糖酶,已经引起了研究人员的极大关注。在这项研究中,通过肽接头融合两种耐热木聚糖酶设计了一种重组嵌合酶(X11-10)。重组亲本酶,真菌 Bispora sp. MEY-1 的木聚糖酶 10(X10)和细菌 Thermobacillus xylanilyticus 的木聚糖酶 11(X11),及其嵌合体在毕赤酵母(Pichia pastoris)中成功表达、纯化和表征。X11-10 嵌合体在较宽的 pH 范围内具有活性,与亲本酶相比,其热稳定性更高,K 值更低,催化效率(k/K)更高。此外,X11-10 的分子动力学模拟(MDS)表明,其活性位点残基可以自由与底物相互作用。由于这种新型的嵌合木聚糖酶可以替代两种单独的酶,因此可以最小化生产成本,因此可能在不同的工业过程中有潜在的应用。

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