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首页> 外文期刊>Journal of Biotechnology >Applying unconventional secretion of the endochitinase Cts1 to export heterologous proteins in Ustilago maydis
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Applying unconventional secretion of the endochitinase Cts1 to export heterologous proteins in Ustilago maydis

机译:应用非常规的内切几丁质酶Cts1分泌来输出乌斯提亚哥中的异源蛋白

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摘要

The demand on the biotechnological production of proteins for pharmaceutical, medical and industrial applications is steadily growing. For the production of challenging proteins, we aim to establish a novel expression platform in the well characterized eukaryotic microorganism Ustilago maydis. In filaments of this fungus, secretion of the endochitinase Cts1 depends on mRNA transport along microtubules, which is mediated by the key RNA-binding protein Rrm4. Here, we report two important findings: (i) Cts1 secretion occurs via a novel unconventional route and (ii) this secretory mechanism can be exploited for the export of active heterologous proteins. Initially, we used beta-glucuronidase (Gus) as a reporter for unconventional secretion. This bacterial enzyme is inactivated by N-glycosylation during its passage through the conventional eukaryotic secretory pathway. By contrast, in our system Gus was exported in its active form by fusion to Cts1 confirming its secretion by an unconventional route. As a proof-of-principle for economically important biopharmaceuticals we expressed an active single-chain antibody. Importantly, the novel protein export pathway circumvents N-glycosylation which is advantageous in many applications, e.g., to avoid undesired immune reactions in humans. Thus, the unconventional Cts1 secretion machinery has a high potential for the production of biotechnologically relevant proteins
机译:对用于制药,医疗和工业应用的蛋白质的生物技术生产的需求正在稳步增长。为了生产具有挑战性的蛋白质,我们旨在在特征明确的真核微生物Ustilago maydis中建立一个新的表达平台。在这种真菌的细丝中,内切几丁质酶Cts1的分泌取决于沿微管的mRNA转运,这由关键的RNA结合蛋白Rrm4介导。在这里,我们报告两个重要的发现:(i)Cts1分泌是通过一种新颖的非常规途径发生的,并且(ii)这种分泌机制可用于活性异源蛋白质的输出。最初,我们使用β-葡萄糖醛酸酶(Gus)作为非常规分泌的报告基因。该细菌酶在通过常规的真核分泌途径时会被N-糖基化灭活。相比之下,在我们的系统中,Gus通过与Cts1融合以活性形式输出,从而通过非常规途径确认了其分泌。作为经济上重要的生物药物的原理证明,我们表达了一种活性单链抗体。重要的是,新的蛋白质输出途径绕过了N-糖基化,这在许多应用中是有利的,例如,以避免人类中不希望的免疫反应。因此,非常规的Cts1分泌机制具有生产生物技术相关蛋白的巨大潜力

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