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Accurate analysis of fusion expression of Pichia pastoris glycosylphosphatidylinositol-modified cell wall proteins

机译:精确分析磷酸甘油基磷脂磷脂肌醇改性细胞蛋白的融合表达

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摘要

Glycosylphosphatidylinositol (GPI)-anchored glycoproteins have diverse intrinsic functions in yeasts, and they also have different uses in vitro. The GPI-modified cell wall proteins GCW21, GCW51, and GCW61 of Pichia pastoris were chosen as anchoring proteins to construct co-expression strains in P. pastoris GS115. The hydrolytic activity and the amount of Candida antarctica lipase B (CALB) displayed on cell surface increased significantly following optimization of the fusion gene dosage and combination of the homogeneous or heterogeneous cell wall proteins. Maximum CALB hydrolytic activity was achieved at 4920 U/g dry cell weight in strain GS115/CALB-GCW (51 + 51 + 61 + 61) after 120 h of methanol induction. Changes in structural morphology and the properties of the cell surfaces caused by co-expression of fusion proteins were observed by transmission electron microscopy (TEM) and on plates containing cell-wall-destabilizing reagent. Our results suggested that both the outer and inner cell layers were significantly altered by overexpression of GPI-modified cell wall proteins. Interestingly, quantitative analysis of the inner layer components showed an increase in beta-1,3-glucan, but no obvious changes in chitin in the strains overexpressing GPI-modified cell wall proteins.
机译:糖基磷脂酰肌醇(GPI)-Achantored糖蛋白在酵母中具有不同的内在功能,并且它们在体外也有不同的用途。选择GPI改性的细胞壁蛋白GCW21,GCW51和PICHIA牧场的GCW61作为锚定蛋白,以构建P. Pastoris GS115中的共表达菌株。在优化融合基因剂量和均相或异质细胞壁壁蛋白的组合之后,在细胞表面上显示的水解活性和念珠菌抗原脂肪酶B(CALB)的量显着增加。在甲醇诱导120小时后,在菌株GS115 / CALB-GCW(51 + 51 + 61 + 61)中的4920u / g干细胞重量在4920u / g干细胞重量中实现了最大CALB水解活性。通过透射电子显微镜(TEM)和含有细胞壁 - 壁稳定试剂的平板观察结构形态的变化和由融合蛋白的共表达引起的细胞表面的性质。我们的研究结果表明,通过GPI改性细胞壁蛋白的过表达显着改变了外部和内部电池层。有趣的是,内层组分的定量分析显示β-1,3-葡聚糖的增加,但在过表达GPI改性的细胞壁蛋白的菌株中对几丁质的明显变化。

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