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Involvement of the exomer complex in the polarized transport of Ena1 required for Saccharomyces cerevisiae survival against toxic cations

机译:在酿酒酵母对毒性阳离子的酿酒酵母中生存期需要的eNA1的偏振传输中的参与

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摘要

Exomer is an adaptor complex required for the direct transport of a selected number of cargoes from the trans-Golgi network (TGN) to the plasma membrane in Saccharomyces cerevisiae. However, exomer mutants are highly sensitive to increased concentrations of alkali metal cations, a situation that remains unexplained by the lack of transport of any known cargoes. Here we identify several HAL genes that act as multicopy suppressors of this sensitivity and are connected to the reduced function of the sodium ATPase Ena1. Furthermore, we find that Ena1 is dependent on exomer function. Even though Ena1 can reach the plasma membrane independently of exomer, polarized delivery of Ena1 to the bud requires functional exomer. Moreover, exomer is required for full induction of Ena1 expression after cationic stress by facilitating the plasma membrane recruitment of the molecular machinery involved in Rim101 processing and activation of the RIM101 pathway in response to stress. Both the defective localization and the reduced levels of Ena1 contribute to the sensitivity of exomer mutants to alkali metal cations. Our work thus expands the spectrum of exomer-dependent proteins and provides a link to a more general role of exomer in TGN organization.
机译:Exomer是将选定数量的货物直接传输到酿酒酵母中的血浆膜中选定数量的货物所需的适配器复合物。然而,Exomer突变体对增加的碱金属阳离子浓度高度敏感,这种情况缺乏任何已知货物的运输仍然无法解释。在这里,我们鉴定了一种充当这种敏感性的多拷贝抑制器的HAL基因,并且连接到ATP酶ENA1的减少功能。此外,我们发现ENA1取决于拓扑功能。尽管ENA1可以独立于溢位物到达等离子体膜,但是ENA1至芽的偏振递送需要官能展开。此外,通过促进伴随RIM101加工和RIM101途径的激活伴随的抗血浆机械,伴随阳离子应力之后,需要赋予阳离子应力后的ena1表达。缺陷定位和降低的ena1水平都有助于exomer突变体对碱金属阳离子的敏感性。因此,我们的作品扩展了依赖于屈服的蛋白质的光谱,并提供了在TGN组织中更一致的展示作用的链接。

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