首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Plant-Specific Cation/H+ Exchanger 17 and Its Homologs Are Endomembrane K+ Transporters with Roles in Protein Sorting
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Plant-Specific Cation/H+ Exchanger 17 and Its Homologs Are Endomembrane K+ Transporters with Roles in Protein Sorting

机译:植物特有的阳离子/ H +交换子17及其同系物是膜内K +转运蛋白在蛋白质分选中起作用

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摘要

The complexity of intracellular compartments in eukaryotic cells evolved to provide distinct environments to regulate processes necessary for cell proliferation and survival. A large family of predicted cation/proton exchangers (CHX), represented by 28 genes in Arabidopsis thaliana, are associated with diverse endomembrane compartments and tissues in plants, although their roles are poorly understood. We expressed a phylogenetically related cluster of CHX genes, encoded by CHX15–CHX20, in yeast and bacterial cells engineered to lack multiple cation-handling mechanisms. Of these, CHX16–CHX20 were implicated in pH homeostasis because their expression rescued the alkaline pH-sensitive growth phenotype of the host yeast strain. A smaller subset, CHX17–CHX19, also conferred tolerance to hygromycin B. Further differences were observed in K+- and low pH-dependent growth phenotypes. Although CHX17 did not alter cytoplasmic or vacuolar pH in yeast, CHX20 elicited acidification and alkalization of the cytosol and vacuole, respectively. Using heterologous expression in Escherichia coli strains lacking K+ uptake systems, we provide evidence for K+ (86Rb) transport mediated by CHX17 and CHX20. Finally, we show that CHX17 and CHX20 affected protein sorting as measured by carboxypeptidase Y secretion in yeast mutants grown at alkaline pH. In plant cells, CHX20-RFP co-localized with an endoplasmic reticulum marker, whereas RFP-tagged CHX17–CHX19 co-localized with prevacuolar compartment and endosome markers. Together, these results suggest that in response to environmental cues, multiple CHX transporters differentially modulate K+ and pH homeostasis of distinct intracellular compartments, which alter membrane trafficking events likely to be critical for adaptation and survival.
机译:真核细胞中细胞内区室的复杂性演变为提供独特的环境来调节细胞增殖和存活所必需的过程。尽管人们对它们的作用了解甚少,但由拟南芥中的28个基因代表的一大类预测的阳离子/质子交换剂(CHX)与植物的各种内膜区室和组织有关。我们在工程化缺乏多种阳离子处理机制的酵母和细菌细胞中表达了由CHX15–CHX20编码的CHX基因的系统发生相关簇。其中,CHX16–CHX20与pH稳态有关,因为它们的表达拯救了宿主酵母菌株的碱性pH敏感生长表型。较小的子集CHX17–CHX19也赋予了潮霉素B耐受性。在K + -和低pH依赖性生长表型中观察到了进一步的差异。尽管CHX17不会改变酵母中的细胞质或液泡pH,但CHX20分别引起细胞质和液泡的酸化和碱化。利用在缺乏K + 摄取系统的大肠杆菌菌株中的异源表达,我们提供了CHX17和CHX20介导的K + 86 Rb)转运的证据。 。最后,我们显示了CHX17和CHX20影响了蛋白质的分选,这是通过在碱性pH值下生长的酵母突变体中的羧肽酶Y分泌测量的。在植物细胞中,CHX20-RFP与内质网标记共定位,而带有RFP标签的CHX17-CHX19与前真空室和内体标记共定位。总之,这些结果表明,响应环境线索,多个CHX转运蛋白差异地调节不同细胞内区室的K + 和pH稳态,这改变了可能对适应和存活至关重要的膜运输事件。

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