首页> 外文期刊>American Journal of Physiology >Multiplicity of expression of FXYD proteins in mammalian cells: dynamic exchange of phospholemman and gamma-subunit in response to stress.
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Multiplicity of expression of FXYD proteins in mammalian cells: dynamic exchange of phospholemman and gamma-subunit in response to stress.

机译:FXYD蛋白在哺乳动物细胞中表达的多样性:磷酸核酸和γ亚基响应应激的动态交换。

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摘要

Functional properties of Na-K-ATPase can be modified by association with FXYD proteins, expressed in a tissue-specific manner. Here we show that expression of FXYDs in cell lines does not necessarily parallel the expression pattern of FXYDs in the tissue(s) from which the cells originate. While being expressed only in lacis cells in the juxtaglomerular apparatus and in blood vessels in kidney, FXYD1 was abundant in renal cell lines of proximal tubule origin (NRK-52E, LLC-PK1, and OK cells). Authenticity of FXYD1 as a part of Na-K-ATPase in NRK-52E cells was demonstrated by co-purification, co-immunoprecipitation, and co-localization. Induction of FXYD2 by hypertonicity (500 mosmol/kgH(2)O with NaCl for 48 h or adaptation to 700 mosmol/kgH(2)O) correlated with downregulation of FXYD1 at mRNA and protein levels. The response to hypertonicity was influenced by serum factors and entailed, first, dephosphorylation of FXYD1 at Ser(68) (1-5 h) and, second, induction of FXYD2a and a decrease in FXYD1 with longer exposure. FXYD1 was completely replaced with FXYD2a in cells adapted to 700 mosmol/kgH(2)O and showed a significantly decreased sodium affinity. Thus dephosphorylation of FXYD1 followed by exchange of regulatory subunits is utilized to make a smooth transition of properties of Na-K-ATPase. We also observed expression of mRNA for multiple FXYDs in various cell lines. The expression was dynamic and responsive to physiological stimuli. Moreover, we demonstrated expression of FXYD5 protein in HEK-293 and HeLa cells. The data imply that FXYDs are obligatory rather than auxiliary components of Na-K-ATPase, and their interchangeability underlies responses of Na-K-ATPase to cellular stress.
机译:Na-K-ATPase的功能特性可以通过与FXYD蛋白结合来修饰,以组织特异性方式表达。在这里,我们表明FXYD在细胞系中的表达不一定与细胞起源的组织中FXYD的表达模式平行。虽然 FXYD1 仅在近肾小球器官的 lacis 细胞和肾脏血管中表达,但在近端肾小管起源的肾细胞系(NRK-52E、LLC-PK1 和 OK 细胞)中丰富。FXYD1 作为 NRK-52E 细胞中 Na-K-ATP 酶的一部分的真实性通过共纯化、免疫共沉淀和共定位得到证明。通过高渗性诱导 FXYD2(500 mosmol/kgH(2)O 与 NaCl 48 小时或适应 700 mosmol/kgH(2)O)与 FXYD1 在 mRNA 和蛋白质水平的下调相关。对高渗性的反应受血清因子的影响,首先导致 FXYD1 在 Ser(68) (1-5 小时)处去磷酸化,其次,诱导 FXYD2a 和 FXYD1 随着暴露时间的延长而降低。在适应700 mosmol/kgH(2)O的细胞中,FXYD1被FXYD2a完全取代,并显示出显著降低的钠亲和力。因此,利用FXYD1的去磷酸化和调节亚基的交换来使Na-K-ATP酶的性质平滑过渡。我们还观察到多种FXYDs在不同细胞系中mRNA的表达。该表达是动态的,对生理刺激有反应。此外,我们证明了 FXYD5 蛋白在 HEK-293 和 HeLa 细胞中的表达。数据表明,FXYD是Na-K-ATPase的必需成分,而不是辅助成分,它们的可互换性是Na-K-ATP酶对细胞应激反应的基础。

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