Black M W, Pelham H R
Medical Research Council, Laboratory of Molecular Biology, Cambridge CB2 2QH, United Kingdom.
J Cell Biol. 2000 Oct 30;151(3):587-600. doi: 10.1083/jcb.151.3.587.
Pep12p is a yeast syntaxin located primarily in late endosomes. Using mutagenesis of a green fluorescent protein chimera we have identified a sorting signal FSDSPEF, which is required for transport of Pep12p from the exocytic pathway to late endosomes, from which it can, when overexpressed, reach the vacuole. When this signal is mutated, Pep12p instead passes to early endosomes, a step that is determined by its transmembrane domain. Surprisingly, Pep12p is then specifically retained in early endosomes and does not go on to late endosomes. By testing appropriate chimeras in mutant strains, we found that FSDSPEF-dependent sorting was abolished in strains lacking Gga1p and Gga2p, Golgi-associated coat proteins with homology to gamma adaptin. In the gga1 gga2 double mutant endogenous Pep12p cofractionated with the early endosome marker Tlg1p, and recycling of Snc1p through early endosomes was defective. Pep12p sorting was also defective in cells lacking the clathrin heavy or light chain. We suggest that specific and direct delivery of proteins to early and late endosomes is required to maintain the functional heterogeneity of the endocytic pathway and that the GGA proteins, probably in association with clathrin, help create vesicles destined for late endosomes.
Pep12p是一种主要位于晚期内体的酵母Syntaxin蛋白。通过对绿色荧光蛋白嵌合体进行诱变,我们鉴定出了一个分选信号FSDSPEF,它是Pep12p从胞吐途径转运至晚期内体所必需的,当Pep12p过表达时,它能从晚期内体到达液泡。当这个信号发生突变时,Pep12p转而进入早期内体,这一步骤由其跨膜结构域决定。令人惊讶的是,Pep12p随后特异性地保留在早期内体中,不再进入晚期内体。通过在突变菌株中测试合适的嵌合体,我们发现,在缺乏Gga1p和Gga2p(与γ衔接蛋白具有同源性的高尔基体相关包被蛋白)的菌株中,FSDSPEF依赖的分选被消除。在gga1 gga2双突变体中,内源性Pep12p与早期内体标记物Tlg1p共分离,并且Snc1p通过早期内体的循环存在缺陷。在缺乏网格蛋白重链或轻链的细胞中,Pep12p的分选也存在缺陷。我们认为,为维持内吞途径的功能异质性,需要将蛋白质特异性地直接递送至早期和晚期内体,并且GGA蛋白可能与网格蛋白结合,有助于形成运往晚期内体的囊泡。