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含有未切割的糖基磷脂酰肌醇膜锚定附着信号的蛋白质保留在内质网后区室中。

Proteins containing an uncleaved signal for glycophosphatidylinositol membrane anchor attachment are retained in a post-ER compartment.

作者信息

Moran P, Caras I W

机构信息

Department of Immunobiology, Genentech, Incorporated, South San Francisco, California 94080.

出版信息

J Cell Biol. 1992 Nov;119(4):763-72. doi: 10.1083/jcb.119.4.763.

Abstract

Glycophosphatidylinositol (GPI)-anchored membrane proteins are initially synthesized with a cleavable COOH-terminal extension that signals anchor attachment. Overexpression in COS cells of hGH-DAF fusion proteins containing the GPI signal of decay accelerating factor (DAF) fused to the COOH-terminus of human growth hormone (hGH), produces both GPI-anchored hGH-DAF and uncleaved precursors that retain the GPI signal. Using hGH-DAF fusion proteins containing a mutated, noncleavable GPI signal, we show that uncleaved polypeptides are retained inside the cell and accumulate in a brefeldin A-sensitive, Golgi-like juxtanuclear structure. Retention requires the presence of either a functional or a noncleavable GPI signal; hGH-DAF fusion proteins containing only the COOH-terminal hydrophobic domain (a component of the GPI signal) are secreted. Immunofluorescence analysis shows colocalization of the retained, uncleaved fusion proteins with both a Golgi marker and with p53, a marker of the ER-Golgi intermediate compartment. Since N-linked glycosylation is postulated to facilitate the transport of proteins to the cell surface, we engineered a glycosylation site into hGH-DAF. Glycosylation failed to completely override the transport block, but allowed some uncleaved hGH-DAF to pass through the secretory pathway and acquire endoglycosidase H resistance. The retained molecules remained endoglycosidase H sensitive. We suggest that the uncleaved fusion protein is retained in a sorting compartment between the ER and the medial Golgi complex. We speculate that a mechanism exists to retain proteins containing an uncleaved GPI signal as part of a system for quality control.

摘要

糖基磷脂酰肌醇(GPI)锚定膜蛋白最初合成时带有一个可裂解的COOH末端延伸,该延伸作为锚定附着的信号。在COS细胞中过表达包含与人生长激素(hGH)的COOH末端融合的衰变加速因子(DAF)的GPI信号的hGH - DAF融合蛋白,会产生GPI锚定的hGH - DAF和保留GPI信号的未裂解前体。使用含有突变的、不可裂解的GPI信号的hGH - DAF融合蛋白,我们发现未裂解的多肽保留在细胞内,并积聚在对布雷菲德菌素A敏感的、类似高尔基体的近核结构中。保留需要存在功能性或不可裂解的GPI信号;仅包含COOH末端疏水结构域(GPI信号的一个组成部分)的hGH - DAF融合蛋白会被分泌。免疫荧光分析显示,保留的未裂解融合蛋白与高尔基体标志物以及内质网 - 高尔基体中间区室的标志物p53共定位。由于推测N - 糖基化有助于蛋白质向细胞表面的转运,我们在hGH - DAF中设计了一个糖基化位点。糖基化未能完全克服转运障碍,但允许一些未裂解的hGH - DAF通过分泌途径并获得对内切糖苷酶H的抗性。保留的分子对内切糖苷酶H仍敏感。我们认为未裂解的融合蛋白保留在内质网和高尔基体中间复合体之间的一个分选区室中。我们推测存在一种机制来保留含有未裂解GPI信号的蛋白质,作为质量控制系统的一部分。

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