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A deletion that includes the segment coding for the signal peptidase cleavage site delays release of Saccharomyces cerevisiae acid phosphatase from the endoplasmic reticulum.

机译:包括编码信号肽酶切割位点的区段的缺失延迟了酿酒酵母酸磷酸酶从内质网的释放。

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摘要

We studied ultrastructural localization of acid phosphatase in derepressed Saccharomyces cerevisiae cells transformed with a multicopy plasmid carrying either the wild-type PHO5 gene or a PHO5 gene deleted in the region overlapping the signal peptidase cleavage site. Wild-type enzyme was located in the cell wall, as was 50% of the modified protein, which carried high-mannose-sugar chains. The remaining 50% of the protein was active and core glycosylated, and it accumulated in the endoplasmic reticulum cisternae. The signal peptide remained uncleaved in both forms. Cells expressing the modified protein exhibited an exaggerated endoplasmic reticulum with dilated lumen.
机译:我们研究了用多拷贝质粒转化的去抑制的酿酒酵母细胞中酸性磷酸酶的超微结构定位,所述多拷贝质粒携带有野生型PHO5基因或在与信号肽酶切割位点重叠的区域中缺失的PHO5基因。野生型酶位于细胞壁中,修饰蛋白的50%也位于细胞壁,该蛋白带有高甘露糖糖链。剩余的50%的蛋白质具有活性,并被核心糖基化,并积累在内质网池中。信号肽以两种形式均未被切割。表达修饰蛋白的细胞表现出具有扩张的内腔的夸大的内质网。

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