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首页> 外文期刊>Applied Microbiology and Biotechnology >Spacer-elongated cell wall fusion proteins improve cell surface expression in the yeast Saccharomyces cerevisiae
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Spacer-elongated cell wall fusion proteins improve cell surface expression in the yeast Saccharomyces cerevisiae

机译:间隔物延长的细胞壁融合蛋白可改善酵母酿酒酵母中的细胞表面表达

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摘要

Fusion proteins for cell surface expression in the yeast Saccharomyces cerevisiae were constructed that consisted of the N-terminal leader sequence of Kre1p, followed by the nine amino acid viral epitope hemagglutinin (HA), and the carboxyterminal anchoring domain of either Cwp2p or Flo1p. All fusions were constitutively expressed under transcriptional control of the phosphoglycerate kinase promoter and immunofluorescence analysis indicated that in each construct the HA peptide was correctly anchored to the outer yeast cell surface. Successful solubilization of the cell wall fusions by laminarinase treatment indicated that the fusions are covalently linked to cell wall beta-1,3-D-glucans in vivo. FACS analyses further demonstrated that 70% of the yeast cell population expressed the corresponding cell wall fusion. Neither the number of positive cells within the population nor the distribution of the fusion at the single-cell level were negatively affected by replacing the "heterologous" Kre1p leader by the "native" Cwp2p leader. Insertion of a 350 amino acid Ser/Thr-rich spacer sequence into the fusions led to a dramatic increase in HA peptide accessibility on the yeast cell surface. Our data show that FACS analyses represent a valuable means for investigating cell surface expression, and indicate that artificial-spacer-elongated cell wall fusions might raise novel possibilities for cell surface expression of heterologous proteins in yeast. [References: 26]
机译:构建了用于在酿酒酵母中进行细胞表面表达的融合蛋白,该融合蛋白由Kre1p的N末端前导序列,随后的9个氨基酸病毒表位血凝素(HA)和Cwp2p或Flo1p的羧基末端锚定域组成。在磷酸甘油酸激酶启动子的转录控制下,所有融合体均组成性表达,免疫荧光分析表明,在每个构建体中,HA肽均已正确锚定在酵母细胞表面。通过层粘连蛋白酶处理成功溶解细胞壁融合物表明,该融合物在体内与细胞壁β-1,3-D-葡聚糖共价连接。 FACS分析进一步证明70%的酵母细胞群体表达了相应的细胞壁融合。通过用“天然” Cwp2p前导序列取代“异源” Kre1p前导序列,群体中阳性细胞的数量和融合在单细胞水平上的分布都不会受到负面影响。将350个氨基酸的富含Ser / Thr的间隔子序列插入融合物中,导致酵母细胞表面HA肽的可及性急剧增加。我们的数据表明,FACS分析代表了研究细胞表面表达的宝贵手段,并表明人工间隔物延长的细胞壁融合可能为酵母中异源蛋白的细胞表面表达带来新的可能性。 [参考:26]

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