Cossins A R, Kilbey R V
Department of Environmental and Evolutionary Biology, University of Liverpool.
J Exp Biol. 1990 Jan;148:303-12. doi: 10.1242/jeb.148.1.303.
The effects of temperature upon the adrenergic Na+/H+ exchange of rainbow trout erythrocytes have been studied in vitro. The initial rates of H+ ejection and of increase of intracellular Na+ [( Na+]i) in adrenergically stimulated cells were highly temperature-dependent, with apparent Arrhenius activation energies of 112.8 +/- 10.0 (mean +/- S.D., N = 4) and 84.1 +/- 3.0 kJ mol-1 (N = 3), respectively. The steady-state [Na+]i following stimulation decreased progressively with cooling, whilst the time required for [Na+]i to return to control values after removal of agonist was greatly increased. The change in intracellular pH resulting from adrenergic stimulation was reduced by cooling, such that at 4 degrees C adrenergic responses were barely measurable. The effect of temperature upon the steady-state [Na+]i and pHi was probably caused by a disparity in the temperature dependence of the transport mechanisms that contribute to the respective steady states.
已在体外研究了温度对虹鳟红细胞肾上腺素能钠/氢交换的影响。肾上腺素刺激的细胞中,氢离子排出的初始速率和细胞内钠离子浓度[(Na⁺)i]的增加高度依赖温度,其表观阿累尼乌斯活化能分别为112.8±10.0(平均值±标准差,N = 4)和84.1±3.0 kJ mol⁻¹(N = 3)。刺激后的稳态[Na⁺]i随着冷却而逐渐降低,而去除激动剂后[Na⁺]i恢复到对照值所需的时间大大增加。冷却降低了肾上腺素能刺激引起的细胞内pH变化,以至于在4℃时几乎无法测量肾上腺素能反应。温度对稳态[Na⁺]i和细胞内pH的影响可能是由于导致各自稳态的转运机制对温度的依赖性存在差异。