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Na+/K+-ATPase α-subunit (nkaα) Isoforms and Their mRNA Expression Levels Overall Nkaα Protein Abundance and Kinetic Properties of Nka in the Skeletal Muscle and Three Electric Organs of the Electric Eel Electrophorus electricus

机译:Na + / K + -ATPaseα-亚基(nkaα)亚型及其mRNA表达水平总Nkaα蛋白丰度以及骨骼肌和电鳗电泳电三个器官中Nka的动力学特性

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摘要

This study aimed to obtain the coding cDNA sequences of Na+/K+-ATPase α (nkaα) isoforms from, and to quantify their mRNA expression in, the skeletal muscle (SM), the main electric organ (EO), the Hunter’s EO and the Sach’s EO of the electric eel, Electrophorus electricus. Four nkaα isoforms (nkaα1c1, nkaα1c2, nkaα2 and nkaα3) were obtained from the SM and the EOs of E. electricus. Based on mRNA expression levels, the major nkaα expressed in the SM and the three EOs of juvenile and adult E. electricus were nkaα1c1 and nkaα2, respectively. Molecular characterization of the deduced Nkaα1c1 and Nkaα2 sequences indicates that they probably have different affinities to Na+ and K+. Western blotting demonstrated that the protein abundance of Nkaα was barely detectable in the SM, but strongly detected in the main and Hunter’s EOs and weakly in the Sach’s EO of juvenile and adult E. electricus. These results corroborate the fact that the main EO and Hunter’s EO have high densities of Na+ channels and produce high voltage discharges while the Sach’s EO produces low voltage discharges. More importantly, there were significant differences in kinetic properties of Nka among the three EOs of juvenile E. electricus. The highest and lowest V max of Nka were detected in the main EO and the Sach’s EO, respectively, with the Hunter’s EO having a V max value intermediate between the two, indicating that the metabolic costs of EO discharge could be the highest in the main EO. Furthermore, the Nka from the main EO had the lowest Km (or highest affinity) for Na+ and K+ among the three EOs, suggesting that the Nka of the main EO was more effective than those of the other two EOs in maintaining intracellular Na+ and K+ homeostasis and in clearing extracellular K+ after EO discharge.
机译:这项研究旨在从骨骼肌中获得Na + / K + -ATPaseα(nkaα)亚型的编码cDNA序列,并定量它们在mRNA中的表达。 SM),主要电器官(EO),电鳗Hunter's EO和Sach's EO,Electrophorus electricus。从E.electricus的SM和EOs获得了四个nkaα亚型(nkaα1c1,nkaα1c2,nkaα2和nkaα3)。根据mRNA表达水平,在幼年和成年大肠杆菌的SM和三个EO中主要表达的nkaα分别为nkaα1c1和nkaα2。推导的Nkaα1c1和Nkaα2序列的分子表征表明,它们可能与Na + 和K + 具有不同的亲和力。 Western印迹表明,在SM中几乎检测不到Nkaα的蛋白丰度,但是在主要和Hunter EO中强烈检测到Nkaα的蛋白质,而在青少年和成人E.electricus的Sach EO中检测到的含量很弱。这些结果证实了以下事实:主要的EO和Hunter的EO具有高浓度的Na + 通道并产生高压放电,而Sach的EO则产生低压放电。更重要的是,三个 E EO的Nka动力学性质存在显着差异。 electricus 。在主要EO和Sach的EO中分别检测到Nka的最高和最低 V max,Hunter EO在两者之间具有 V 最大值,表明EO排放的代谢成本可能是主要EO中最高的。此外,在三个EO中,主要EO的Nka对Na + 和K + 的最低 Km (或最高亲和力),这表明主要EO的Nka比其他两个EO的Nka在维持细胞内Na + 和K + 稳态和清除细胞外K + < / sup>在EO放电后。

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