Roomans G M, Theuvenet A P, van den Berg T P, Borst-Pauwels G W
Biochim Biophys Acta. 1979 Feb 20;551(1):187-96. doi: 10.1016/0005-2736(79)90364-x.
The uptake of Ca2+ and Sr2+ by the yeast Saccharomyces cerevisiae is energy dependent, and shows a deviation from simple Michaelis-Menten kinetics. A model is discussed that takes into account the effect of the surface potential and the membrane potential on uptake kinetics. The rate of Ca2+ and Sr2+ uptake is influenced by the cell pH and by the medium pH. The inhibition of uptake at low concentration of Ca2+ and Sr2+ at low pH may be explained by a decrease of the surface potential. The inhibition of Ca2+ and Sr2+ uptake by monovalent cations is independent of the divalent cation concentration. The inhibition shows saturation kinetics, and the concentration of monovalent cation at which half-maximal inhibition is observed, is equal to the affinity constant of this ion for the monovalent cation transport system. The inhibition of divalent cation uptake by monovalent cations appears to be related to depolarization of the cell membrane. Phosphate exerts a dual effect on uptake of divalent cations: and initial inhibition and a secondary stimulation. The inhibition shows saturation kinetics, and the inhibition constant is equal to the affinity constant of phosphate for its transport mechanism. The secondary stimulation can only partly be explained by a decrease of the cell pH, suggesting interaction of intracellular phosphate, or a phosphorylated compound, with the translocation mechanism.
酿酒酵母对Ca2+和Sr2+的摄取是能量依赖性的,并且表现出与简单的米氏动力学的偏差。本文讨论了一个考虑表面电位和膜电位对摄取动力学影响的模型。Ca2+和Sr2+的摄取速率受细胞pH值和培养基pH值的影响。低pH值下低浓度Ca2+和Sr2+对摄取的抑制作用可能是由于表面电位的降低。单价阳离子对Ca2+和Sr2+摄取的抑制作用与二价阳离子浓度无关。这种抑制表现出饱和动力学,观察到半最大抑制时的单价阳离子浓度等于该离子对单价阳离子转运系统的亲和常数。单价阳离子对二价阳离子摄取的抑制作用似乎与细胞膜的去极化有关。磷酸盐对二价阳离子的摄取有双重作用:初始抑制和二次刺激。这种抑制表现出饱和动力学,抑制常数等于磷酸盐对其转运机制的亲和常数。二次刺激只能部分地用细胞pH值的降低来解释,这表明细胞内磷酸盐或磷酸化化合物与转运机制之间存在相互作用。