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FXYD 蛋白异构体差异调节人钠/钾泵功能。

FXYD protein isoforms differentially modulate human Na/K pump function.

机构信息

Department of Cell Physiology and Molecular Biophysics, Center for Membrane Protein Research, Texas Tech University Health Sciences Center, Lubbock TX.

School of Biological Sciences, Illinois State University. Normal, IL.

出版信息

J Gen Physiol. 2020 Dec 7;152(12). doi: 10.1085/jgp.202012660.

Abstract

Tight regulation of the Na/K pump is essential for cellular function because this heteromeric protein builds and maintains the electrochemical gradients for Na+ and K+ that energize electrical signaling and secondary active transport. We studied the regulation of the ubiquitous human α1β1 pump isoform by five human FXYD proteins normally located in muscle, kidney, and neurons. The function of Na/K pump α1β1 expressed in Xenopus oocytes with or without FXYD isoforms was evaluated using two-electrode voltage clamp and patch clamp. Through evaluation of the partial reactions in the absence of K+ but presence of Na+ in the external milieu, we demonstrate that each FXYD subunit alters the equilibrium between E1P(3Na) and E2P, the phosphorylated conformations with Na+ occluded and free from Na+, respectively, thereby altering the apparent affinity for Na+. This modification of Na+ interaction shapes the small effects of FXYD proteins on the apparent affinity for external K+ at physiological Na+. FXYD6 distinctively accelerated both the Na+-deocclusion and the pump-turnover rates. All FXYD isoforms altered the apparent affinity for intracellular Na+ in patches, an effect that was observed only in the presence of intracellular K+. Therefore, FXYD proteins alter the selectivity of the pump for intracellular ions, an effect that could be due to the altered equilibrium between E1 and E2, the two major pump conformations, and/or to small changes in ion affinities that are exacerbated when both ions are present. Lastly, we observed a drastic reduction of Na/K pump surface expression when it was coexpressed with FXYD1 or FXYD6, with the former being relieved by injection of PKA's catalytic subunit into the oocyte. Our results indicate that a prominent effect of FXYD1 and FXYD6, and plausibly other FXYDs, is the regulation of Na/K pump trafficking.

摘要

钠钾泵的紧密调控对于细胞功能至关重要,因为这种异源三聚体蛋白构建并维持了钠离子和钾离子的电化学梯度,为电信号和次级主动运输提供能量。我们研究了通常存在于肌肉、肾脏和神经元中的五种人类 FXYD 蛋白对无处不在的人源α1β1 泵同工型的调节作用。使用双电极电压钳和膜片钳技术,评估了在有无 FXYD 同工型的情况下,在非洲爪蟾卵母细胞中表达的钠钾泵α1β1 的功能。通过在外环境中缺乏 K+但存在 Na+的情况下评估部分反应,我们证明每个 FXYD 亚基改变了 E1P(3Na)和 E2P 之间的平衡,E1P(3Na)和 E2P 分别是 Na+被封闭和游离的磷酸化构象,从而改变了对 Na+的表观亲和力。这种对 Na+相互作用的修饰塑造了 FXYD 蛋白对生理 Na+条件下外部 K+的表观亲和力的微小影响。FXYD6 显著加速了 Na+的去封闭和泵周转率。所有 FXYD 同工型都改变了在膜片钳中对细胞内 Na+的表观亲和力,这种效应仅在存在细胞内 K+时才观察到。因此,FXYD 蛋白改变了泵对细胞内离子的选择性,这种效应可能是由于 E1 和 E2 之间平衡的改变,E1 和 E2 是泵的两种主要构象,和/或当两种离子都存在时,离子亲和力的微小变化会加剧。最后,当与 FXYD1 或 FXYD6 共表达时,我们观察到钠钾泵表面表达明显减少,前者可通过将 PKA 的催化亚基注入卵母细胞来缓解。我们的结果表明,FXYD1 和 FXYD6 以及其他 FXYD 蛋白的一个主要作用是调节钠钾泵的运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d22/7690937/789fb0e3f667/JGP_202012660_Fig1.jpg

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