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首页> 外文期刊>Applied and Environmental Microbiology >Comparison of cell wall proteins of Saccharomyces cerevisiae as anchors for cell surface expression of heterologous proteins.
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Comparison of cell wall proteins of Saccharomyces cerevisiae as anchors for cell surface expression of heterologous proteins.

机译:酿酒酵母细胞壁蛋白作为异源蛋白细胞表面表达锚点的比较。

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The carboxyl-terminal regions of five cell wall proteins (Cwp1p, Cwp2p, Ag alpha 1p, Tip1p, and Flo1p) and three potential cell wall proteins (Sed1p, YCR89w, and Tir1p) all proved capable of immobilizing alpha-galactosidase in the cell wall of Saccharomyces cerevisiae. The fraction of the total amount of fusion protein that was localized to the cell wall varied depending on the anchor domain used. The highest proportion of cell wall incorporation was achieved with Cwp2p, Ag alpha 1p, or Sed1p as an anchor. Although 80% of these fusion proteins were incorporated in the cell wall, the total production of alpha-galactosidase-Ag alpha 1p was sixfold lower than that of alpha-galactosidase-Cwp2p and eightfold lower than that of alpha-galactosidase-Sed1p. Differences in mRNA levels were not responsible for this discrepancy, nor was an intracellular accumulation of alpha-galactosidase-Ag alpha 1p detectable. A lower translation efficiency of the alpha-galactosidase-AG alpha 1 fusion construct is most likely to be responsible for the low level of protein production. alpha-Galactosidase immobilized by the carboxyl-terminal 67 amino acids of Cwp2p was most effective in the hydrolysis of the high-molecular-weight substrate guar gum from Cyamopsis tetragonoloba. This indicates that the use of a large anchoring domain does not necessarily result in a better exposure of the immobilized enzyme to the exterior of the yeast cell.
机译:事实证明,五个细胞壁蛋白(Cwp1p,Cwp2p,Ag alpha 1p,Tip1p和Flo1p)和三个潜在细胞壁蛋白(Sed1p,YCR89w和Tir1p)的羧基末端区域都能够将α-半乳糖苷酶固定在细胞壁中酿酒酵母。定位于细胞壁的融合蛋白总量中的比例随所使用的锚定域而异。使用Cwp2p,Ag alpha 1p或Sed1p作为锚点,可以达到最高的细胞壁掺入比例。尽管这些融合蛋白中有80%掺入了细胞壁,但α-半乳糖苷酶-Agα1p的总产量比α-半乳糖苷酶-Cwp2p低六倍,而比α-半乳糖苷酶-Sed1p低八倍。 mRNA水平的差异不是造成这种差异的原因,α-半乳糖苷酶-Ag alpha 1p的细胞内积累也不是可检测的。 α-半乳糖苷酶-AGα1融合构建体的较低翻译效率最可能是造成蛋白质生产水平低的原因。由Cwp2p的羧基末端67个氨基酸固定的α-半乳糖苷酶在从Cyamopsis tetragonoloba水解高分子量底物瓜尔胶中最有效。这表明使用大的锚定结构域不一定导致固定化酶更好地暴露于酵母细胞的外部。

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