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Efficient enzymatic degradation process for hydrolysis activity of the Carrageenan from red algae in marine biomass

机译:海洋生物量中红藻中角叉菜胶水解活性的高效酶促降解工艺

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is a generic name for a family of polysaccharides obtained from certain species of red algae. New methods to produce useful cost-efficiently materials from red algae are needed to convert enzymatic processes into fermentable sugars. In this study, we constructed chimeric genes cCgkA and cCglA containing the catalytic domain of kappa-carrageenase CgkA and kappa-carrageenase CglA from Pseudoalteromonas carrageenovora fused with a dockerin domain. Recombinant strains expressing the chimeric carrageenase resulted in a halo formation on the carrageenan plate by alcian blue staining. The recombinant cCgkA and cCglA were assembled with scaffoldin miniCbpA via cohesin and dockerin interaction. Carbohydrate binding module (CBM) in scaffoldin was used as a tag for cellulose affinity purification using cellulose as a support. The hydrolysis process was monitored by the amount of reducing sugar released from carrageenan. Interestingly, these results indicated that miniCbpA, cCgkA and cCglA assembled into a complex and that the dockerin-fused enzymes on the scaffoldin had synergistic activity in the degradation of carrageenan. The observed enhancement of activity by carrageenolytic complex was 3.1-fold-higher compared with the corresponding enzymes alone. Thus, the assemblies of advancement of active enzyme complexes will facilitate the commercial production of useful products from red algae biomass which represents inexpensive and sustainable feed-stocks. (C) 2014 Elsevier B.V. All rights reserved.
机译:是从某些种类的红藻中获得的多糖家族的通用名称。需要新的方法来从红藻中生产有用的具有成本效益的材料,以将酶过程转化为可发酵的糖。在这项研究中,我们构建了嵌合基因cCgkA和cCglA,其中包含来自dockeralin域融合的假单胞菌卡拉胶假单胞菌的kappa-角叉菜胶CgkA和kappa-角叉菜胶CglA的催化结构域。表达嵌合角叉菜胶酶的重组菌株通过阿尔辛蓝染色在角叉菜胶板上形成光环。重组cCgkA和cCglA通过支架蛋白和dockerin相互作用与scaffoldin miniCbpA组装在一起。支架蛋白中的碳水化合物结合模块(CBM)用作使用纤维素作为载体的纤维素亲和纯化的标签。通过从角叉菜胶释放的还原糖的量来监测水解过程。有趣的是,这些结果表明miniCbpA,cCgkA和cCglA组装成复合物,而支架蛋白上的dockerin融合酶在角叉菜胶的降解中具有协同活性。与单独的相应酶相比,通过角叉菜胶复合物观察到的活性增强高3.1倍。因此,活性酶复合物的推进组装将促进由红藻生物质的有用产品的商业生产,红藻生物质代表廉价且可持续的原料。 (C)2014 Elsevier B.V.保留所有权利。

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