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蛋白质ERGIC-53定位于内质网/内质网-高尔基体中间结构/顺式高尔基体循环途径。

Targeting of protein ERGIC-53 to the ER/ERGIC/cis-Golgi recycling pathway.

作者信息

Itin C, Schindler R, Hauri H P

机构信息

Department of Pharmacology, University of Basel, Switzerland.

出版信息

J Cell Biol. 1995 Oct;131(1):57-67. doi: 10.1083/jcb.131.1.57.

Abstract

ERGIC-53 is a lectin-type membrane protein that continuously recycles between the ER, ER-Golgi intermediate compartment (ERGIC) and the cis-Golgi. To identify the targeting signals that mediate this recycling, N-glycosylated and myc-tagged variants of ERGIC-53 were constructed. By monitoring endoglycosidase H resistance, we measured the loss from the ER-ERGIC-cis-Golgi cycle of ERGIC-53. A domain exchange approach with the plasma membrane reporter protein CD4 showed that the transmembrane and the lumenal domains are not sufficient, while the cytoplasmic domain of ERGIC-53 is required and sufficient for pre-medial-Golgi localization. However, the ERGIC-53 cytoplasmic domain on CD4 lead to increased ER-staining by immunofluorescence microscopy indicating that this domain alone cannot provide for unbiased recycling through the ER-ERGIC-cis-Golgi compartments. Complete progress through the ER-ERGIC-cis-Golgi recycling pathway requires the cytoplasmic domain acting together with the lumenal domain of ERGIC-53. Dissection of the cytoplasmic domain revealed a COOH-terminal di-lysine ER-retrieval signal, KKFF, and an RSQQE targeting determinant adjacent to the transmembrane domain. Surprisingly, the two COOH-terminal phenylalanines influence the targeting. They reduce the ER-retrieval capacity of the di-lysine signal and modulate the RSQQE determinant.

摘要

内质网-高尔基体中间腔53(ERGIC-53)是一种凝集素型膜蛋白,它在粗面内质网(ER)、内质网-高尔基体中间腔(ERGIC)和顺式高尔基体之间持续循环。为了鉴定介导这种循环的靶向信号,构建了N-糖基化且带有myc标签的ERGIC-53变体。通过监测内切糖苷酶H抗性,我们测定了ERGIC-53从ER-ERGIC-顺式高尔基体循环中的损失。用质膜报告蛋白CD4进行的结构域交换方法表明,跨膜结构域和腔内结构域是不够的,而ERGIC-53的胞质结构域对于顺式高尔基体前定位是必需且足够的。然而,CD4上的ERGIC-53胞质结构域通过免疫荧光显微镜导致内质网染色增加,表明仅该结构域不能实现通过ER-ERGIC-顺式高尔基体区室的无偏循环。通过ER-ERGIC-顺式高尔基体循环途径的完整进程需要胞质结构域与ERGIC-53的腔内结构域共同作用。对胞质结构域的剖析揭示了一个COOH末端双赖氨酸内质网回收信号KKFF,以及一个与跨膜结构域相邻的RSQQE靶向决定簇。令人惊讶的是,两个COOH末端苯丙氨酸影响靶向作用。它们降低了双赖氨酸信号的内质网回收能力,并调节RSQQE决定簇。

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