Kappeler F, Itin C, Schindler R, Hauri H P
Department of Pharmacology, University of Basel, Switzerland.
J Biol Chem. 1994 Mar 4;269(9):6279-81.
ERGIC-53 (former designation, p53) is a 53-kDa nonglycosylated, dimeric, and hexameric type I membrane protein that has been established as a marker protein for a tubulovesicular intermediate compartment in which protein transport from the endoplasmic reticulum to the Golgi apparatus is blocked at 15 degrees C. Although ERGIC-53 is not a resident protein of the rough endoplasmic reticulum its cDNA sequence carries a double lysine endoplasmic reticulum retention motif at the cytoplasmically exposed COOH terminus. Here we report that overexpression of ERGIC-53 in COS cells saturates its intracellular retention system leading to the appearance of ERGIC-53 at the cell surface. Cell surface ERGIC-53 is efficiently endocytosed by a mechanism that is disturbed when the two critical lysines of the endoplasmic reticulum retention motif are replaced by serines. The results suggest a mechanistic similarity of pre-Golgi retention by the double lysine motif and lysine-based endocytosis.
内质网-高尔基体中间腔53蛋白(ERGIC-53,原称p53)是一种53千道尔顿的非糖基化、二聚体和六聚体I型膜蛋白,已被确立为一种标记蛋白,用于标记一种小管泡状中间区室,在15摄氏度时,从内质网到高尔基体的蛋白质转运在该中间区室被阻断。尽管ERGIC-53不是粗面内质网的驻留蛋白,但其cDNA序列在细胞质暴露的COOH末端带有一个双赖氨酸内质网保留基序。在此我们报告,ERGIC-53在COS细胞中的过表达使其细胞内保留系统饱和,导致ERGIC-53出现在细胞表面。细胞表面的ERGIC-53通过一种机制被有效地内吞,当内质网保留基序的两个关键赖氨酸被丝氨酸取代时,该机制会受到干扰。结果表明双赖氨酸基序介导的高尔基体前体保留与基于赖氨酸的内吞作用在机制上具有相似性。