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Coexpression of cellulases in Pichia pastoris as a self-processing protein fusion

机译:纤维素酶在毕赤酵母中的共表达作为一种自加工蛋白融合体

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The term cellulase?refers to any component of the enzymatic complex produced by?some fungi,?bacteria and protozoans which act serially or synergistically to catalyze?the cleavage of cellulosic materials. Cellulases have been widely used in many industrial applications ranging from food industry to the production of second generation ethanol. In an effort to develop new strategies to minimize the costs of enzyme production we describe the development of a Pichia pastoris strain able to coproduce two different cellulases. For that purpose the eglII (endoglucanase II) and cbhII (cellobiohydrolase II) genes from Trichoderma reesei were fused in-frame separated by the self-processing 2A peptide sequence from the foot-and-mouth disease virus. The protein fusion construct was placed under the control of the strong inducible AOX1 promoter. Analysis of culture supernatants from methanol-induced yeast transformants showed that the protein fusion was effectively processed. Enzymatic assay showed that the processed enzymes were fully functional with the same catalytic properties of the individual enzymes produced separately. Furthermore, when combined both enzymes acted synergistically on filter paper to produce cellobiose as the main end-product. Based on these results we propose that P. pastoris should be considered as an alternative platform for the production of cellulases at competitive costs.
机译:术语纤维素酶是指由某些真菌,细菌和原生动物产生的酶复合物的任何成分,它们顺序或协同作用来催化纤维素材料的裂解。纤维素酶已广泛用于从食品工业到第二代乙醇生产的许多工业应用中。在努力开发新策略以最小化酶生产成本的过程中,我们描述了能够共同生产两种不同纤维素酶的巴斯德毕赤酵母菌株的开发。为此目的,将里氏木霉的eglII(内切葡聚糖酶II)和cbhII(纤维二糖水解酶II)基因框内融合,并通过口蹄疫病毒的自我加工2A肽序列进行分离。将蛋白质融合构建体置于强诱导型AOX1启动子的控制下。对甲醇诱导的酵母转化子的培养上清液的分析表明,蛋白融合得到了有效处理。酶促测定表明,加工过的酶具有完全的功能,并且具有与单独生产的各个酶相同的催化特性。此外,当两种酶结合在一起时,它们在滤纸上协同作用,以产生纤维二糖作为主要终产物。根据这些结果,我们建议将巴斯德毕赤酵母视为生产纤维素酶的替代平台,且价格具有竞争力。

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