首页> 外文期刊>Journal of cell biology >The yeast orthologue of GRASP65 forms a complex with a coiled-coil protein that contributes to ER to Golgi traffic
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The yeast orthologue of GRASP65 forms a complex with a coiled-coil protein that contributes to ER to Golgi traffic

机译:GRASP65的酵母直系同源物与卷曲螺旋蛋白形成复合物,该螺旋蛋白有助于内质网向高尔基体运输

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The mammalian Golgi protein GRASP65 is required in assays that reconstitute cisternal stacking and vesicle tethering. Attached to membranes by an N-terminal myristoyl group, it recruits the coiled-coil protein GM130. The relevance of this system to budding yeasts has been unclear, as they lack an obvious orthologue of GM130, and their only GRASP65 relative (Grh1) lacks a myristoylation site and has even been suggested to act in a mitotic checkpoint. In this study, we show that Grh1 has an N-terminal amphipathic helix that is N-terminally acetylated and mediates association with the cis-Golgi. We find that Grh1 forms a complex with a previously uncharacterized coiled-coil protein, Ydl099w (Bug1). In addition, Grh1 interacts with the Sec23/24 component of the COPII coat. Neither Grh1 nor Bug1 are essential for growth, but biochemical assays and genetic interactions with known mediators of vesicle tethering (Uso1 and Ypt1) suggest that the Grh1–Bug1 complex contributes to a redundant network of interactions that mediates consumption of COPII vesicles and formation of the cis-Golgi.
机译:重组脑池堆叠和囊泡束缚的测定需要哺乳动物高尔基蛋白GRASP65。它通过N末端肉豆蔻酰基基团附着在膜上,募集了卷曲螺旋蛋白GM130。该系统与发芽酵母的相关性尚不清楚,因为它们缺乏明显的GM130直系同源物,并且它们唯一的GRASP65亲戚(Grh1)缺乏肉豆蔻酰化位点,甚至被认为在有丝分裂检查点起作用。在这项研究中,我们显示Grh1具有N端乙酰化的N末端两亲性螺旋,并介导与顺式高尔基体的关联。我们发现,Grh1与以前未鉴定的卷曲螺旋蛋白Ydl099w(Bug1)形成复合物。此外,Grh1与COPII涂层的Sec23 / 24组分相互作用。 Grh1和Bug1都不是生长所必需的,但是生化分析和与囊泡束缚的已知介质(Uso1和Ypt1)的遗传相互作用表明,Grh1-Bug1复合物有助于形成冗余的相互作用网络,该相互作用网络介导COPII囊泡的消耗和细菌的形成。顺式高尔基体。

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