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Thermobifida fusca exoglucanase Cel6B is incompatible with the cellulosomal mode in contrast to endoglucanase Cel6A

机译:与内切葡聚糖酶Cel6A相反Thermobifida fusca exoglucananase Cel6B与纤维素体模式不兼容

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摘要

Cellulosomes are efficient cellulose-degradation systems produced by selected anaerobic bacteria. This multi-enzyme complex is assembled from a group of cellulases attached to a protein scaffold termed scaffoldin, mediated by a high-affinity protein–protein interaction between the enzyme-borne dockerin module and the cohesin module of the scaffoldin. The enzymatic complex is attached as a whole to the cellulosic substrate via a cellulose-binding module (CBM) on the scaffoldin subunit. In previous works, we have employed a synthetic biology approach to convert several of the free cellulases of the aerobic bacterium, Thermobifida fusca, into the cellulosomal mode by replacing each of the enzymes’ CBM with a dockerin. Here we show that although family six enzymes are not a part of any known cellulosomal system, the two family six enzymes of the T. fusca system (endoglucanase Cel6A and exoglucanase Cel6B) can be converted to work as cellulosomal enzymes. Indeed, the chimaeric dockerin-containing family six endoglucanase worked well as a cellulosomal enzyme, and proved to be more efficient than the parent enzyme when present in designer cellulosomes. In stark contrast, the chimaeric family six exoglucanase was markedly less efficient than the wild-type enzyme when mixed with other T. fusca cellulases, thus indicating its incompatibility with the cellulosomal mode of action.
机译:纤维素体是由选定的厌氧细菌产生的高效纤维素降解系统。这种多酶复合物由一组附着在称为支架蛋白的蛋白支架上的纤维素酶组装而成,该酶由支架蛋白的酶载码头蛋白模块和粘着蛋白模块之间的高亲和力蛋白-蛋白相互作用介导。酶复合物通过支架蛋白亚基上的纤维素结合模块(CBM)整体附着在纤维素底物上。在以前的工作中,我们采用合成生物学方法,通过用一种dockerin取代每种酶的CBM,将好氧细菌Therobifida fusca的几种游离纤维素酶转化为纤维素体模式。在这里,我们显示,尽管六族酶不是任何已知的纤维素酶系统的一部分,但是可以将T. fusca系统的两种六族酶(内切葡聚糖酶Cel6A和外切葡聚糖酶Cel6B)转化为纤维素酶。确实,包含奇美尔的码头素蛋白的家族六内切葡聚糖酶作为纤维素酶运作良好,并且当存在于设计的纤维素体中时,被证明比母体酶更有效。与之形成鲜明对比的是,当与其他山毛榉纤维素酶混合时,嵌合体六族葡聚糖葡聚糖酶的效率明显低于野生型酶,因此表明其与纤维素酶的作用方式不兼容。

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