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Modulation of cell polarization by the Na~+-K~+-ATPase-associated protein FXYD5 (dysadherin)

机译:Na〜+ -K〜+ -ATPase相关蛋白FXYD5(dysadherin)对细胞极化的调节

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FXYD5 (dysadherin or also called a related to ion channel, RIC) is a transmembrane auxiliary subunit of the Na~+-K~+-ATPase shown to increase its maximal velocity (V_(max))- FXYD5 has also been identified as a cancer-associated protein whose expression in tumor-derived cell lines impairs cyto-skeletal organization and increases cell motility. Previously, we have demonstrated that the expression of FXYD5 in Ml cells derived from mouse kidney collecting duct impairs the formation of tight and adherence junctions. The current study aimed to further explore effects of FXYD5 at a single cell level. It was found that in Ml, as well as three other cell lines, FXYD5 inhibits transformation of adhered single cells from the initial radial shape to a flattened, elongated shape in the first stage of monolayer formation. This is also correlated to less ordered actin cables and fewer focal points. Structure-function analysis has demonstrated that the transmembrane domain of FXYD5, and not its unique extracellular segment, mediates the inhibition of change in cell shape. This domain has been shown before to be involved in the association of FXYD5 with the Na~+-K~+-ATPase, which leads to the increase in V_(max). Furthermore, specific transmembrane point mutations in FXYD5 that either increase or decrease its effect on cell elongation had a corresponding effect on the coimmunoprecipitation of FXYD5 with alpha Na~+-K~+-ATPase. These findings lend support to the possibility that FXYD5 affects cell polarization through its transmembrane domain interaction with the Na~+-K~+-ATPase. Yet interaction of FXYD5 with other proteins cannot be excluded.
机译:FXYD5(dysadherin或也称为离子通道相关离子RIC)是Na〜+ -K〜+ -ATPase的跨膜辅助亚基,显示其最大速度(V_(max))增加-FXYD5也被确定为癌相关蛋白,其在肿瘤衍生细胞系中的表达会损害细胞骨架组织并增加细胞运动性。以前,我们已经证明了FXYD5在源自小鼠肾脏收集管的M1细胞中的表达会损害紧密连接和粘附连接的形成。当前的研究旨在进一步探索FXYD5在单个细胞水平上的作用。发现在M1以及其他三个细胞系中,FXYD5在单层形成的第一阶段抑制粘附的单细胞从初始径向形状向扁平,伸长形状的转化。这也与较少的肌动蛋白电缆排列和较少的焦点有关。结构功能分析表明,FXYD5的跨膜结构域而不是其独特的细胞外区段介导了细胞形状变化的抑制。之前已证明该结构域参与了FXYD5与Na〜+ -K〜+ -ATPase的缔合,从而导致V_(max)增加。此外,增加或减少其对细胞伸长的影响的FXYD5中特定的跨膜点突变对FXYD5与αNa〜+ -K〜+ -ATPase的共免疫沉淀具有相应的影响。这些发现为FXYD5通过其跨膜结构域与Na〜+ -K〜+ -ATPase相互作用影响细胞极化的可能性提供了支持。然而,不能排除FXYD5与其他蛋白质的相互作用。

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