Kappeler F, Klopfenstein D R, Foguet M, Paccaud J P, Hauri H P
Department of Pharmacology, Biozentrum, University of Basel, CH-4056 Basel, Switzerland.
J Biol Chem. 1997 Dec 12;272(50):31801-8. doi: 10.1074/jbc.272.50.31801.
Further investigation of the targeting of the intracellular membrane lectin endoplasmic reticulum (ER)-Golgi intermediate compartment-53 (ERGIC-53) by site-directed mutagenesis revealed that its lumenal and transmembrane domains together confer ER retention. In addition we show that the cytoplasmic domain is required for exit from the ER indicating that ERGIC-53 carries an ER-exit determinant. Two phenylalanines at the C terminus are essential for ER-exit. Thus, ERGIC-53 contains determinants for ER retention as well as anterograde transport which, in conjunction with a dilysine ER retrieval signal, control the continuous recycling of ERGIC-53 in the early secretory pathway. In vitro binding studies revealed a specific phenylalanine-dependent interaction between an ERGIC-53 cytosolic tail peptide and the COPII coat component Sec23p. These results suggest that the ER-exit of ERGIC-53 is mediated by direct interaction of its cytosolic tail with the Sec23p.Sec24p complex of COPII and that protein sorting at the level of the ER occurs by a mechanism similar to receptor-mediated endocytosis or Golgi to ER retrograde transport.
通过定点诱变对细胞内膜凝集素内质网(ER)-高尔基体中间腔室-53(ERGIC-53)的靶向进行的进一步研究表明,其腔域和跨膜域共同赋予内质网滞留功能。此外,我们还表明胞质域是从内质网输出所必需的,这表明ERGIC-53携带一个内质网输出决定因素。C末端的两个苯丙氨酸对于内质网输出至关重要。因此,ERGIC-53包含内质网滞留以及顺向运输的决定因素,这些因素与双赖氨酸内质网回收信号一起,控制着ERGIC-53在早期分泌途径中的持续循环。体外结合研究揭示了ERGIC-53胞质尾肽与COPII衣被组分Sec23p之间存在特定的苯丙氨酸依赖性相互作用。这些结果表明,ERGIC-53的内质网输出是由其胞质尾与COPII的Sec23p.Sec24p复合物直接相互作用介导的,并且内质网水平的蛋白质分选是通过一种类似于受体介导的内吞作用或高尔基体到内质网逆行运输的机制发生的。