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Constitutive expression of hydrophobin HFB1 from Trichoderma reesei in Pichia pastoris and its pre-purification by foam separation during cultivation

机译:里氏木霉疏水蛋白HFB1在巴斯德毕赤酵母中的组成型表达及其在培养过程中泡沫分离的预纯化

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Hydrophobins are small surface-active proteins that have considerable potential for use in applications ranging from medical and technical coatings, separation technologies, biosensors, and personal care. Their wider use would be facilitated by the availability of recombinant tailor-made hydrophobins. We successfully expressed the class II hydrophobin HFB1 from Trichoderma reesei in Pichia pastoris under the control of the constitutive GAP (glyceraldehyde 3-phosphate dehydrogenase) promoter. Avoidingthe use of the AOX1 (alcohol oxidase 1) promoter prevents the costs and risks associated with the storage and delivery of methanol used as an inducer. Efficient secretion of hydrophobin was achieved using either the alpha-factor prepro-peptide or the native secretion signal of HFB1. The secreted hydrophobins have been isolated with a purity of up to 70% using in situ foam separation during the cultivation process. Coating experiments and surface pressure measurements demonstrated the activity of the hydrophobins. An immunodot assay showed the accessibility of carboxyterminally fused tags of the hydrophobin, which is necessary for potential applications using functionalized hydrophobins. The presented data show that Pichia pastoris is a suitable systemfor production of constitutively expressed and secreted active hydrophobin, allowing for in situ pre-purification using foam separation.
机译:疏水蛋白是小的表面活性蛋白,在医疗和技术涂料,分离技术,生物传感器和个人护理等应用中具有巨大的潜力。重组定制疏水蛋白的可用性将促进其更广泛的使用。我们成功地在组成型GAP(甘油醛3-磷酸脱氢酶)启动子的控制下,在巴斯德毕赤酵母中成功表达了来自里氏木霉的II类疏水蛋白HFB1。避免使用AOX1(醇氧化酶1)促进剂可防止与用作诱导剂的甲醇的储存和输送相关的成本和风险。使用α因子前原肽或HFB1的天然分泌信号可实现疏水蛋白的有效分泌。在培养过程中使用原位泡沫分离技术可分离出纯度高达70%的分泌疏水蛋白。涂层实验和表面压力测量证明了疏水蛋白的活性。免疫斑点测定显示疏水蛋白的羧基末端融合标签的可及性,这对于使用功能化疏水蛋白的潜在应用是必需的。所提供的数据表明巴斯德毕赤酵母是生产组成型表达和分泌的活性疏水蛋白的合适系统,可使用泡沫分离技术进行原位预纯化。

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