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Expression of a Fungal Hydrophobin in the Saccharomyces cerevisiae Cell Wall: Effect on Cell Surface Properties and Immobilization

机译:真菌疏水蛋白在酿酒酵母细胞壁中的表达:对细胞表面特性和固定化的影响。

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The aim of this work was to modify the cell surface properties of Saccharomyces cerevisiae by expression of the HFBI hydrophobin of the filamentous fungus Trichoderma reesei on the yeast cell surface. The second aim was to study the immobilization capacity of the modified cells. Fusion to the Flo1p flocculin was used to target the HFBI moiety to the cell wall. Determination of cell surface characteristics with contact angle and zeta potential measurements indicated that HFBI-producing cells are more apolar and slightly less negatively charged than the parent cells. Adsorption of the yeast cells to different commercial supports was studied. A twofold increase in the binding affinity of the hydrophobin-producing yeast to hydrophobic silicone-based materials was observed, while no improvement in the interaction with hydrophilic carriers could be seen compared to that of the parent cells. Hydrophobic interactions between the yeast cells and the support are suggested to play a major role in attachment. Also, a slight increase in the initial adsorption rate of the hydrophobin yeast was observed. Furthermore, due to the engineered cell surface, hydrophobin-producing yeast cells were efficiently separated in an aqueous two-phase system by using a nonionic polyoxyethylene detergent, C12-18EO5.
机译:这项工作的目的是通过在酵母细胞表面上表达丝状真菌里氏木霉的HFBI疏水蛋白来修饰酿酒酵母的细胞表面特性。第二个目的是研究修饰细胞的固定能力。与Flo1p絮凝蛋白的融合用于将HFBI部分靶向细胞壁。用接触角和ζ电势测量来确定细胞表面特征表明,产生HFBI的细胞比亲代细胞更无极性并且带负电荷少。研究了酵母细胞对不同商业载体的吸附。观察到产生疏水蛋白的酵母与基于疏水性有机硅的材料的结合亲和力增加了两倍,而与亲代细胞相比,与亲水性载体的相互作用没有改善。酵母细胞和支持物之间的疏水相互作用被认为在附着中起主要作用。另外,观察到疏水蛋白酵母的初始吸附速率略有增加。此外,由于工程化的细胞表面,使用非离子型聚氧乙烯清洁剂C12-18EO5在含水两相系统中有效地分离了产生疏水蛋白的酵母细胞。

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