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The Polarized Distribution of Na+,K+-ATPase: Role of the Interaction between β Subunits

机译:Na +,K + -ATPase的极化分布:β亚基之间相互作用的作用

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摘要

The very existence of higher metazoans depends on the vectorial transport of substances across epithelia. A crucial element of this transport is the membrane enzyme Na+,K+-ATPase. Not only is this enzyme distributed in a polarized manner in a restricted domain of the plasma membrane but also it creates the ionic gradients that drive the net movement of glucose, amino acids, and ions across the entire epithelium. In a previous work, we have shown that Na+,K+-ATPase polarity depends on interactions between the β subunits of Na+,K+-ATPases located on neighboring cells and that these interactions anchor the entire enzyme at the borders of the intercellular space. In the present study, we used fluorescence resonance energy transfer and coprecipitation methods to demonstrate that these β subunits have sufficient proximity and affinity to permit a direct interaction, without requiring any additional extracellular molecules to span the distance.
机译:高级后生动物的存在取决于物质在上皮细胞上的载体运输。这种转运的关键因素是膜酶Na + ,K + -ATPase。这种酶不仅以极化的方式分布在质膜的受限区域内,而且还会产生离子梯度,从而驱动葡萄糖,氨基酸和离子在整个上皮细胞中的净运动。在先前的工作中,我们表明Na + ,K + -ATPase的极性取决于Na + ,K的β亚基之间的相互作用 + -ATPases位于相邻细胞上,这些相互作用将整个酶锚定在细胞间间隙的边界。在本研究中,我们使用了荧光共振能量转移和共沉淀方法来证明这些β亚基具有足够的亲和力和亲和力,可以进行直接相互作用,而无需任何其他细胞外分子跨越距离。

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