Wheatley D N, Miseta A, Kellermayer M, Galambos C, Bogner P, Berènyi E, Cameron I L
Department of Pathology, University of Aberdeen, Foresterhill, Scotland, U.K.
Physiol Chem Phys Med NMR. 1994;26(1):111-8.
The intracellular K+/Na+ ratio of erythrocytes of different mammalian species are known to differ markedly. These differences are sustained despite plasma potassium and sodium concentrations being almost identical, i.e. high [Na+] and low [K+], in all mammalian species. Conventional cell theory couples intracellular K+ and Na+ concentrations with Na+/K(+)-dependent ATPase activity. Ling's Association-Induction (AI) hypothesis couples intracellular K+ and Na+ concentrations with the concentration of ATP, by way of an inductive adsorption of both monovalent cations on the available terminal and lateral carboxyl groups of proteins. Based on the working hypothesis, different relationships are expected between the erythrocyte K+ and Na+ concentrations and ATP levels. Our results indicate that the intracellular ATP level in erythrocytes of different species corresponds with intracellular K+ and Na+ levels, K+/Na+ ratios and total K+ + Na+ levels. Similar relationships were revealed between the erythrocyte ATP and monovalent cation contents of different individual sheep.
已知不同哺乳动物物种红细胞的细胞内K⁺/Na⁺比值存在显著差异。尽管所有哺乳动物物种的血浆钾和钠浓度几乎相同,即高[Na⁺]和低[K⁺],但这些差异仍然存在。传统细胞理论将细胞内K⁺和Na⁺浓度与Na⁺/K⁺依赖性ATP酶活性联系起来。凌的联合-诱导(AI)假说通过一价阳离子在蛋白质可用的末端和侧向羧基上的诱导吸附,将细胞内K⁺和Na⁺浓度与ATP浓度联系起来。基于这一工作假说,红细胞K⁺和Na⁺浓度与ATP水平之间预期会有不同的关系。我们的结果表明,不同物种红细胞内的ATP水平与细胞内K⁺和Na⁺水平、K⁺/Na⁺比值以及K⁺+Na⁺总量相对应。不同个体绵羊的红细胞ATP与一价阳离子含量之间也显示出类似的关系。