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A homologous production system for Trichoderma reesei secreted proteins in a cellulase-free background

机译:无纤维素酶背景下里氏木霉分泌蛋白的同源生产系统

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摘要

Recent demands for the production of biofuels from lignocellulose led to an increased interest in engineered cellulases from Trichoderma reesei or other fungal sources. While the methods to generate such mutant cellulases on DNA level are straightforward, there is often a bottleneck in their production since a correct posttranslational processing of these enzymes is needed to obtain highly active enzymes. Their production and subsequent enzymatic analysis in the homologous host T. reesei is, however, often disturbed by the concomitant production of other endogenous cellulases. As a useful alternative, we tested the production of cellulases in T. reesei in a genetic background where cellulase formation has been impaired by deletion of the major cellulase transcriptional activator gene xyr1. Three cellulase genes (cel7a, cel7b, and cel12a) were expressed under the promoter regions of the two highly expressed genes tef1 (encoding translation elongation factor 1-alpha) or cdna1 (encoding the hypothetical protein Trire2:110879). When cultivated on d-glucose as carbon source, the Δxyr1 strain secreted all three cellulases into the medium. Related to the introduced gene copy number, the cdna1 promoter appeared to be superior to the tef1 promoter. No signs of proteolysis were detected, and the individual cellulases could be assayed over a background essentially free of other cellulases. Hence this system can be used as a vehicle for rapid and high-throughput testing of cellulase muteins in a homologous background.
机译:从木质纤维素生产生物燃料的最新需求导致对来自里氏木霉或其他真菌来源的工程纤维素酶的兴趣增加。尽管在DNA水平上产生这种突变纤维素酶的方法很简单,但由于需要对这些酶进行正确的翻译后加工以获得高度活性的酶,因此在生产中经常遇到瓶颈。然而,在同源宿主里氏木霉中它们的产生和随后的酶分析经常受到其他内源纤维素酶的伴随产生的干扰。作为有用的替代方法,我们在遗传背景下测试了里氏木霉中纤维素酶的产生,在该背景下,主要的纤维素酶转录激活基因xyr1的缺失已削弱了纤维素酶的形成。在两个高度表达的基因tef1(编码翻译延伸因子1-alpha)或cdna1(编码假设的蛋白质Trire2:110879)的启动子区域下表达了三个纤维素酶基因(cel7a,cel7b和cel12a)。当以d-葡萄糖作为碳源进行培养时,Δxyr1菌株会将所有三种纤维素酶分泌到培养基中。与导入的基因拷贝数相关,cdna1启动子似乎优于tef1启动子。没有检测到蛋白水解的迹象,并且可以在基本不含其他纤维素酶的背景下分析单个纤维素酶。因此,该系统可用作同源背景中纤维素酶突变蛋白的快速和高通量测试的载体。

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