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首页> 外文期刊>Journal of microbiology and biotechnology >Incorporation of Nasutitermes takasagoensis Endoglucanase into Cell Surface-Displayed Minicellulosomes in Pichia pastoris X33
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Incorporation of Nasutitermes takasagoensis Endoglucanase into Cell Surface-Displayed Minicellulosomes in Pichia pastoris X33

机译:将Nasutitermes takasagoensis内切葡聚糖酶掺入巴斯德毕赤酵母X33的细胞表面展示的微细胞中。

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摘要

In this study, the yeast Pichia pastoris was genetically modified to assemble minicellulosomes on its cell surface by the heterologous expression of a truncated scaffoldin CipA from Clostridium acetobutylicum. Fluorescence microscopy and western blot analysis confirmed that CipA was targeted to the yeast cell surface and that NtEGD, the Nasutitermes takasagoensis endoglucanase that was fused with dockerin, interacted with CipA on the yeast cell surface, suggesting that the cohesin and dockerin domains and cellulose-binding module of C. acetobutylicum were functional in the yeasts. The enzymatic activities of the cellulases in the minicellulosomes that were displayed on the yeast cell surfaces increased dramatically following interaction with the cohesin-dockerin domains. Additionally, the hydrolysis efficiencies of NtEGD for carboxymethyl cellulose, microcrystal cellulose, and filter paper increased up to 1.4-fold, 2.0-fold, and 3.2-fold, respectively. To the best of our knowledge, this is the first report describing the expression of C. acetobutylicum minicellulosomes in yeast and the incorporation of animal cellulases into cellulosomes. This strategy of heterologous cellulase incorporation lends novel insight into the process of cellulosome assembly. Potentially, the surface display of cellulosomes, such as that reported in this study, may be utilized in the engineering of S. cerevisiae for ethanol production from cellulose and additional future applications.
机译:在这项研究中,酵母巴斯德毕赤酵母经过基因修饰,通过丙酮丁醇梭菌截短的支架蛋白CipA的异源表达,在其细胞表面组装了微纤维素体。荧光显微镜和蛋白质印迹分析证实,CipA靶向酵母细胞表面,与dockerin融合的NtEGD,即高果那苏木内切葡聚糖酶,与酵母细胞表面上的CipA相互作用,表明黏蛋白和dockerin结构域以及纤维素结合丙酮丁醇梭菌的模块在酵母中起作用。在与粘着蛋白-dockerin结构域相互作用后,在酵母细胞表面展示的微纤维素酶中的纤维素酶的酶促活性急剧增加。此外,NtEGD对羧甲基纤维素,微晶纤维素和滤纸的水解效率分别提高了1.4倍,2.0倍和3.2倍。据我们所知,这是第一份描述丙酮丁醇梭菌微纤维素体在酵母中的表达以及动物纤维素酶掺入纤维素体的报道。异源纤维素酶掺入的这种策略为纤维素体组装过程提供了新的见识。纤维素脂质体的表面展示(如本研究中报道的)可能会被用于酿酒酵母的工程中,以从纤维素生产乙醇和其他未来应用。

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