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A light-switchable bidirectional expression system in filamentous fungus Trichoderma reesei

机译:丝状真菌里氏木霉的光开关双向表达系统

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The filamentous fungi Trichoderma reesei is widely used in the production of cellulolytic enzymes and recombinant proteins. However, only moderate success has been achieved in expressing heterologous proteins in T. reesei. Light-dependent control of DNA transcription, and protein expression have been demonstrated in bacteria, fungi, and mammalian cells. In this study, light inducible transactivators, a "light-on" bidirectional promoter and a "light-off" promoter were constructed successfully in T. reesei for the first time. Our light inducible transactivators can homodimerize and bind to the upstream region of artificial promoters to activate or repress genes transcription. Additionally, we upgraded the light-inducible system to on-off system that can simultaneously control the expression of multiple heterologous proteins in T. reesei. Moreover, a native cellulase-free background for the expression of heterologous proteins was achieved by knocking out the genes involved in transcriptional regulation and encoding of cellulases: xyr1, cbh1, and cbh2. Our light-switchable system showed a very little background protein expression and robust activation in the blue light with significantly improved heterologous protein expression. We demonstrate that our light-switchable system has a potential application as an on/off "switch" that can simultaneously regulate the expression of multiple genes in T. reesei under native cellulase-free background. (C) 2016 Elsevier B.V. All rights reserved.
机译:丝状真菌里氏木霉被广泛用于纤维素分解酶和重组蛋白的生产。但是,在里氏木霉中表达异源蛋白仅获得了中等程度的成功。 DNA转录和蛋白质表达的光依赖性控制已在细菌,真菌和哺乳动物细胞中得到证实。在这项研究中,首次在里氏木霉中成功构建了光诱导性反式激活子,“亮”双向启动子和“亮”启动子。我们的光诱导反式激活因子可以二聚化并与人工启动子的上游区域结合,以激活或抑制基因转录。此外,我们将光诱导系统升级为可同时控制里氏木霉中多种异源蛋白表达的开关系统。此外,通过剔除参与纤维素酶的转录调控和编码的基因xyr1,cbh1和cbh2,可以实现表达异源蛋白质的无纤维素酶的天然背景。我们的可光切换系统显示了极少的背景蛋白表达,并且在蓝光下具有强大的激活作用,异源蛋白表达得到了显着改善。我们证明,我们的光开关系统具有潜在的应用作为开/关“开关”,可以在天然纤维素酶无背景下同时调节里氏木霉中多个基因的表达。 (C)2016 Elsevier B.V.保留所有权利。

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