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Construction of GH16β-Glucanase Mini-cellulosomes To Improve the Nutritive Value of Barley-Based Diets for Broilers

机译:GH16β-葡聚糖酶微型纤维素体的构建以提高大麦日粮对肉鸡的营养价值

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Anaerobic cellulolytic bacteria organize a comprehensive range of cellulases and hemicellulases in high molecular weight multienzyme complexes termed cellulosomes. Integration of cellulosornal components occurs via highly ordered protein-protein interactions between cohesins and dockerins. This paper reports the production of mini-cellulosomes containing one (GH16-1C) or three (GH16-3C) copies of Clostridium thermocellum glucanase 16A (CtGlcl6A). Barley β-1,3— 1,4-glucans are known to be antinutritive for monogastric animals, particularly for poultry. GH16-1C and GH16-3C were used to supplement barley-based diets for broilers. The data revealed that the two mini-cellulosomes effectively improved the nutritive value of barley-based diets for broilers. Analysis of mini-cellulosome molecular integrity revealed that linker sequences separating protein domains in scaffoldins and cellulosomal catalytic units are highly susceptible to proteolytic attack in vivo. The data suggest that linker protection could result in further improvements in enzyme efficacy to improve the nutritive value of barley-based diets for monogastric animals.
机译:厌氧纤维素分解细菌在被称为纤维素体的高分子量多酶复合物中组织了一系列纤维素酶和半纤维素酶。纤维素纤维蛋白成分的整合是通过黏着蛋白和码头蛋白之间高度有序的蛋白质-蛋白质相互作用而发生的。本文报道了含有一个(GH16-1C)或三个(GH16-3C)副本的热纤梭菌葡聚糖酶16A(CtGlcl6A)的微型纤维素的生产。已知大麦β-1,3–1,4-葡聚糖对单胃动物特别是家禽具有抗营养作用。 GH16-1C和GH16-3C用于补充以大麦为基础的肉鸡日粮。数据显示,这两种微型纤维素有效提高了大麦类日粮对肉鸡的营养价值。微型纤维素分子分子完整性的分析表明,分隔支架蛋白和纤维素酶催化单元中蛋白质结构域的接头序列在体内对蛋白水解攻击高度敏感。数据表明,接头保护作用可能导致酶功效的进一步改善,从而改善基于大麦的饮食对单胃动物的营养价值。

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