Emery G, Rojo M, Gruenberg J
Department of Biochemistry, University of Geneva, 1211 Geneva 4, Switzerland.
J Cell Sci. 2000 Jul;113 ( Pt 13):2507-16. doi: 10.1242/jcs.113.13.2507.
Recent studies show that small trans-membrane proteins of approximately 22-24 kDa (the p24 family), which are grouped into 4 sub-families by sequence homology (p23, p24, p25 and p26), are involved in the early secretory pathway. In this study, we have investigated the mutual requirements of ectopically expressed members of the p24 family for targeting to their proper cellular destination. We find that coexpression of p23 and p24 is both necessary and sufficient for each protein to be transported to the cis-Golgi network/Golgi complex. Proteins from other subfamilies did not substitute for either p23 or p24, even after multiple coexpression. However, trafficking of the p23/p24 couple was facilitated by coexpression of proteins from other sub-families. In addition, we find that the sequence resembling an endoplasmic reticulum retrieval signal present in the cytoplasmic domain of p23 (but not p24) is dispensable. In contrast, the conserved coiled-coil region in the lumenal domain is absolutely required in both p23 and p24 for proper targeting of the p23/p24 couple. These data demonstrate that p23 and p24 must interact with each other to reach their destination, but that this strict requirement is combined with a mutual dependence amongst p24 proteins. We speculate that p24 proteins can form different oligomeric complexes, which contribute to confer specialized sorting/trafficking properties to membranes of the early secretory pathway, perhaps serving as membrane organizers.
最近的研究表明,约22 - 24 kDa的小跨膜蛋白(p24家族),根据序列同源性分为4个亚家族(p23、p24、p25和p26),参与早期分泌途径。在本研究中,我们调查了p24家族异位表达成员靶向其正确细胞定位的相互需求。我们发现p23和p24的共表达对于每种蛋白转运到顺式高尔基体网络/高尔基体复合体既是必要的也是充分的。即使经过多次共表达,来自其他亚家族的蛋白也不能替代p23或p24。然而,来自其他亚家族的蛋白共表达促进了p23/p24对的运输。此外,我们发现p23(而非p24)胞质结构域中类似内质网回收信号的序列是可有可无的。相反,管腔结构域中保守的卷曲螺旋区域对于p23/p24对正确靶向定位,在p23和p24中都是绝对必需的。这些数据表明,p23和p24必须相互作用才能到达其目的地,但这种严格要求与p24蛋白之间的相互依赖性相结合。我们推测p24蛋白可以形成不同的寡聚复合体,这有助于赋予早期分泌途径膜特殊的分选/运输特性,可能作为膜组织者发挥作用。