Füllekrug J, Suganuma T, Tang B L, Hong W, Storrie B, Nilsson T
Cell Biology and Cell Biophysics Program, European Molecular Biology Laboratory, 69117 Heidelberg, Germany.
Mol Biol Cell. 1999 Jun;10(6):1939-55. doi: 10.1091/mbc.10.6.1939.
We report here the characterization of gp27 (hp24gamma3), a glycoprotein of the p24 family of small and abundant transmembrane proteins of the secretory pathway. Immunoelectron and confocal scanning microscopy show that at steady state, gp27 localizes to the cis side of the Golgi apparatus. In addition, some gp27 was detected in COPI- and COPII-coated structures throughout the cytoplasm. This indicated cycling that was confirmed in three ways. First, 15 degrees C temperature treatment resulted in accumulation of gp27 in pre-Golgi structures colocalizing with anterograde cargo. Second, treatment with brefeldin A caused gp27 to relocate into peripheral structures positive for both KDEL receptor and COPII. Third, microinjection of a dominant negative mutant of Sar1p trapped gp27 in the endoplasmic reticulum (ER) by blocking ER export. Together, this shows that gp27 cycles extensively in the early secretory pathway. Immunoprecipitation and coexpression studies further revealed that a significant fraction of gp27 existed in a hetero-oligomeric complex. Three members of the p24 family, GMP25 (hp24alpha2), p24 (hp24beta1), and p23 (hp24delta1), coprecipitated in what appeared to be stochiometric amounts. This heterocomplex was specific. Immunoprecipitation of p26 (hp24gamma4) failed to coprecipitate GMP25, p24, or p23. Also, very little p26 was found coprecipitating with gp27. A functional requirement for complex formation was suggested at the level of ER export. Transiently expressed gp27 failed to leave the ER unless other p24 family proteins were coexpressed. Comparison of attached oligosaccharides showed that gp27 and GMP25 recycled differentially. Only a very minor portion of GMP25 displayed complex oligosaccharides. In contrast, all of gp27 showed modifications by medial and trans enzymes at steady state. We conclude from these data that a portion of gp27 exists as hetero-oligomeric complexes with GMP25, p24, and p23 and that these complexes are in dynamic equilibrium with individual p24 proteins to allow for differential recycling and distributions.
我们在此报告gp27(hp24γ3)的特性,它是分泌途径中p24家族的一种小而丰富的跨膜蛋白糖蛋白。免疫电子显微镜和共聚焦扫描显微镜显示,在稳态下,gp27定位于高尔基体的顺面。此外,在整个细胞质中,在COP I和COP II包被的结构中检测到一些gp27。这表明存在循环,这通过三种方式得到证实。首先,15℃温度处理导致gp27在前高尔基体结构中积累,与顺行货物共定位。其次,用布雷菲德菌素A处理导致gp27重新定位于对KDEL受体和COP II均呈阳性的外周结构。第三,显微注射Sar1p的显性负突变体通过阻断内质网(ER)输出将gp27捕获在内质网中。总之,这表明gp27在早期分泌途径中广泛循环。免疫沉淀和共表达研究进一步揭示,相当一部分gp27以异源寡聚体复合物的形式存在。p24家族的三个成员,GMP25(hp24α2)、p24(hp24β1)和p23(hp24δ1),以似乎化学计量的量共沉淀。这种异源复合物是特异性的。p26(hp24γ4)的免疫沉淀未能共沉淀GMP25、p24或p23。此外,发现与gp27共沉淀的p26非常少。在内质网输出水平上提示了复合物形成的功能需求。瞬时表达的gp27除非与其他p24家族蛋白共表达,否则无法离开内质网。对连接寡糖的比较表明,gp27和GMP25的循环方式不同。只有非常小部分的GMP25显示出复杂的寡糖。相比之下,所有的gp27在稳态下都显示出被中间和反式酶修饰。我们从这些数据得出结论,一部分gp27以与GMP25、p24和p23的异源寡聚体复合物形式存在,并且这些复合物与单个p24蛋白处于动态平衡,以允许不同的循环和分布。