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Cell Surface Expression of Bacterial Esterase A by Saccharomyces cerevisiae and Its Enhancement by Constitutive Activation of the Cellular Unfolded Protein Response

机译:酿酒酵母细菌表面酯酶A的细胞表面表达及其通过细胞未折叠蛋白应答的组成型激活而增强。

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Yeast cell surface display is a powerful tool for expression and immobilization of biocatalytically active proteins on a unicellular eukaryote. Here bacterial carboxylesterase EstA from Burkholderia gladioli was covalently anchored into the cell wall of Saccharomyces cerevisiae by in-frame fusion to the endogenous yeast proteins Kre1p, Cwp2p, and Flo1p. When p-nitrophenyl acetate was used as a substrate, the esterase specific activities of yeast expressing the protein fusions were 103 mU mg?1 protein for Kre1/EstA/Cwp2p and 72 mU mg?1 protein for Kre1/EstA/Flo1p. In vivo cell wall targeting was confirmed by esterase solubilization after laminarinase treatment and immunofluorescence microscopy. EstA expression resulted in cell wall-associated esterase activities of 2.72 U mg?1 protein for Kre1/EstA/Cwp2p and 1.27 U mg?1 protein for Kre1/EstA/Flo1p. Furthermore, esterase display on the yeast cell surface enabled the cells to effectively grow on the esterase-dependent carbon source glycerol triacetate (Triacetin). In the case of Kre1/EstA/Flo1p, in vivo maturation within the yeast secretory pathway and final incorporation into the wall were further enhanced when there was constitutive activation of the unfolded protein response pathway. Our results demonstrate that esterase cell surface display in yeast, which, as shown here, is remarkably more effective than EstA surface display in Escherichia coli, can be further optimized by activating the protein folding machinery in the eukaryotic secretion pathway.
机译:酵母细胞表面展示是用于将生物催化活性蛋白表达和固定在单细胞真核生物上的强大工具。在这里,通过与内源酵母蛋白Kre1p,Cwp2p和Flo1p的框内融合将来自伯克霍尔德氏菌的细菌羧酸酯酶EstA共价锚定在酿酒酵母的细胞壁中。当使用乙酸对硝基苯酯作为底物时,表达该蛋白融合体的酵母的酯酶比活性对于Kre1 / EstA / Cwp2p是103 mU mg?1蛋白,对于Kre1 / EstA / Flo1p是72 mU mg?1蛋白。在层粘连蛋白处理和免疫荧光显微镜检查后,通过酯酶溶解确认了体内细胞壁靶向。 EstA表达导致针对Kre1 / EstA / Cwp2p的细胞壁相关酯酶活性为2.72 U mg?1蛋白,对于Kre1 / EstA / Flo1p的细胞壁相关酯酶活性为1.27 U mg?1蛋白。此外,酵母细胞表面上的酯酶展示使细胞能够在依赖酯酶的碳源甘油三乙酸酯(Triacetin)上有效生长。在Kre1 / EstA / Flo1p的情况下,当未折叠的蛋白应答途径被组成型激活时,酵母分泌途径内的体内成熟和最终掺入壁中的作用进一步增强。我们的研究结果表明,通过激活真核分泌途径中的蛋白质折叠机制,可以进一步优化酵母中酯酶细胞的表面展示效果(如此处所示,比在大肠杆菌中的EstA表面效果更显着)。

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