Schröder-Köhne S, Letourneur F, Riezman H
Max-Planck-Institut für biophysikalische Chemie, D-37070 Göttingen, Germany.
J Cell Sci. 1998 Dec;111 ( Pt 23):3459-70. doi: 10.1242/jcs.111.23.3459.
Emp47p is a yeast Golgi transmembrane protein with a retrograde, Golgi to ER transport di-lysine signal in its cytoplasmic tail. Emp47p has previously been shown to recycle between the Golgi complex and the ER and to require its di-lysine signal for Golgi localization. In contrast to other proteins with di-lysine signals, the Golgi-localization of Emp47p has been shown to be preserved in ret1-1 cells expressing a mutant alpha-COP subunit of coatomer. Here we demonstrate by sucrose gradient fractionation and immunofluorescence analysis that recycling of Emp47p was unimpaired in ret1-1. Furthermore we have characterized three new alleles of ret1 and showed that Golgi localization of Emp47p was intact in cells with those mutant alleles. We could correlate the ongoing recycling of Emp47p in ret1-1 with preserved in vitro binding of coatomer from ret1-1 cells to immobilized GST-Emp47p-tail fusion protein. As previously reported, the di-lysine signal of Wbp1p was not recognized by ret1-1 mutant coatomer, suggesting a possible role for alpha-COP in the differential binding to distinct di-lysine signals. In contrast to results with alpha-COP mutants, we found that Emp47p was mislocalised to the vacuole in mutants affecting beta'-, gamma-, delta-, and zeta-COP subunits of coatomer and that the mutant coatomer bound neither to the Emp47p nor to the Wbp1p di-lysine signal in vitro. Therefore, the retrograde transport of Emp47p displayed a differential requirement for individual coatomer subunits and a special role of alpha-COP for a particular transport step in vivo.
Emp47p是一种酵母高尔基体跨膜蛋白,其细胞质尾部含有一个逆行的、从高尔基体到内质网运输的双赖氨酸信号。此前已表明,Emp47p在高尔基体复合体和内质网之间循环,并且其高尔基体定位需要双赖氨酸信号。与其他具有双赖氨酸信号的蛋白质不同,Emp47p的高尔基体定位在表达衣被蛋白α-COP亚基突变体的ret1-1细胞中得以保留。在这里,我们通过蔗糖梯度分级分离和免疫荧光分析证明,Emp47p在ret1-1中的循环未受损害。此外,我们鉴定了ret1的三个新等位基因,并表明在具有这些突变等位基因的细胞中,Emp47p的高尔基体定位是完整的。我们可以将ret1-1中Emp47p的持续循环与ret1-1细胞的衣被蛋白与固定化的GST-Emp47p尾部融合蛋白的体外结合保留相关联。如先前报道,Wbp1p的双赖氨酸信号未被ret1-1突变体衣被蛋白识别,这表明α-COP在与不同双赖氨酸信号的差异结合中可能发挥作用。与α-COP突变体的结果相反,我们发现Emp47p在影响衣被蛋白β'-、γ-、δ-和ζ-COP亚基的突变体中错误定位于液泡,并且突变体衣被蛋白在体外既不与Emp47p也不与Wbp1p的双赖氨酸信号结合。因此,Emp47p的逆行运输对单个衣被蛋白亚基表现出不同的需求,并且α-COP在体内特定运输步骤中具有特殊作用。