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β-Subunit overexpression alters the stoicheometry of assembled Na-K-ATPase subunits in MDCK cells

机译:β-亚基过表达改变MDCK细胞中组装的Na-K-ATPase亚基的化学计量

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摘要

In eukaryotic cells, the apparent maintenance of 1:1 stoicheometry between the Na-K-ATPase α- and β-subunits led us to question whether this was alterable and thus if some form of regulation was involved. We have examined the consequences of overexpressing Na-K-ATPase β1-subunits using Madin-Darby canine kidney (MDCK) cells expressing flag-tagged β1-subunits (β1flag) or Myc-tagged β1-subunits (β1myc) under the control of a tetracycline-dependent promoter. The induction of β1flag subunit synthesis in MDCK cells, which increases β1-subunit expression at the plasma membrane by more than twofold, while maintaining stable α1 expression levels, revealed that all mature β1-subunits associate with α1-subunits, and no evidence of “free” β1-subunits was obtained. Consequently, the ratio of assembled β1- to α1-subunits is significantly increased when “extra” β-subunits are expressed. An increased β1/α1 stoicheometry is also observed in cells treated with tunicamycin, suggesting that the protein-protein interactions involved in these complexes are not dependent on glycosylation. Confocal images of cocultured β1myc-expressing and β1flag-expressing MDCK cells show colocalization of β1myc and β1flag subunits at the lateral membranes of neighboring cells, suggesting the occurrence of intercellular interactions between the β-subunits. Immunoprecipitation using MDCK cells constitutively expressing β1myc and tetracycline-regulated β1flag subunits confirmed β-β-subunit interactions. These results demonstrate that the equimolar ratio of assembled β1/α1-subunits of the Na-K-ATPase in kidney cells is not fixed by the inherent properties of the interacting subunits. It is likely that cellular mechanisms are present that regulate the individual Na-K-ATPase subunit abundance.
机译:在真核细胞中,Na-K-ATPaseα-亚基和β-亚基之间1:1化学计量的明显维持使我们怀疑这是否可改变,因此是否涉及某种形式的调控。我们已经检查了在表达调控下使用Madin-Darby犬肾(MDCK)细胞表达标志标记的β1亚基(β1flag)或Myc标记的β1亚基(β1myc)过度表达Na-K-ATPaseβ1亚基的后果。四环素依赖性启动子。诱导MDCK细胞中的β1flag亚基合成,使质膜上的β1亚基表达增加两倍以上,同时保持稳定的α1表达水平,这表明所有成熟的β1亚基均与α1亚基缔合,没有证据表明“获得了游离的β1-亚基。因此,当表达“额外的”β-亚基时,组装的β1-亚基与α1-亚基的比例显着增加。在用衣霉素处理的细胞中也观察到β1/α1化学计量的增加,这表明这些复合物涉及的蛋白质-蛋白质相互作用不依赖于糖基化。共培养表达β1myc和表达β1flag的MDCK细胞的共聚焦图像显示,β1myc和β1flag亚基在邻近细胞的侧膜共定位,表明在β亚基之间存在细胞间相互作用。使用组成性表达β1myc和四环素调节的β1flag亚基的MDCK细胞进行的免疫沉淀证实了β-β-亚基的相互作用。这些结果证明,肾细胞中Na-K-ATP酶的组装的β1/α1-亚基的等摩尔比不受相互作用的亚基的固有特性的固定。可能存在调节单个Na-K-ATPase亚基丰度的细胞机制。

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