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藤壶肌纤维中的pH调节:对细胞外钠和碳酸氢盐的依赖性。

pH regulation in barnacle muscle fibers: dependence on extracellular sodium and bicarbonate.

作者信息

Boron W F, McCormick W C, Roos A

出版信息

Am J Physiol. 1981 Jan;240(1):C80-9. doi: 10.1152/ajpcell.1981.240.1.C80.

Abstract

Intracellular pH (pHi) regulation was studied in barnacle muscle fibers with pH-sensitive microelectrodes. The cells were acid loaded, and the subsequent recovery of pHi was monitored. The rate of recovery was reduced by one-third when external Na+ ([Na+]o) was replaced by Li+, but recovery was completely abolished when Na+ was replaced by choline or N-methyl-D-glucamine. In other experiments, varying amounts of Na+ were replaced by choline, and the acid extrusion rate, derived from the recovery rate of pHi, was calculated at a single value of pHi, 6.80. The dependence of the acid extrusion rate on [Na+]o could be described by Michaelis-Menten kinetics; at pHo (extracellular) = 8.0 and [HCO3-]o (extracellular) = 10 mM, the apparent Km and Vmax were 59 mM and 1.3 mmol x l(-1) x min-1. When [HCO3-]o was reduced to 2.5 mM at the same pHo, Km did not change significantly, but Vmax was substantially reduced. On the other hand, when pHo was reduced to 7.4 at constant [HCO3-]o, Vmax changed only slightly, but Km increased substantially. In similar experiments, we examined the dependence of the acid extrusion rate on [HCO3-]o. At pHo = 8.0 and [Na+]o = 440 mM, the apparent Km and Vmax were 4.1 mM and 2.1 mmol x 1-1 x min-1. When pHo was reduced to 7.4, Vmax was not altered, but Km substantially increased. The kinetic data are discussed in terms of the role of pHo, [Na+]o, and [HCO3-]o in the pHi-regulating system.

摘要

利用对pH敏感的微电极研究了藤壶肌纤维中的细胞内pH(pHi)调节。对细胞进行酸加载,并监测随后pHi的恢复情况。当外部Na+([Na+]o)被Li+取代时,恢复速率降低了三分之一,但当Na+被胆碱或N-甲基-D-葡糖胺取代时,恢复完全被消除。在其他实验中,用不同量的胆碱取代Na+,并在单一pHi值6.80下计算由pHi恢复速率得出的酸外排速率。酸外排速率对[Na+]o的依赖性可用米氏动力学来描述;在细胞外pH(pHo) = 8.0和细胞外[HCO3-]o = 10 mM时,表观Km和Vmax分别为59 mM和1.3 mmol·L-1·min-1。当在相同pHo下将[HCO3-]o降至2.5 mM时,Km没有显著变化,但Vmax大幅降低。另一方面,当在恒定[HCO3-]o下将pHo降至7.4时,Vmax仅略有变化,但Km大幅增加。在类似实验中,我们研究了酸外排速率对[HCO3-]o的依赖性。在pHo = 8.0和[Na+]o = 440 mM时,表观Km和Vmax分别为4.1 mM和2.1 mmol·L-1·min-1。当pHo降至7.4时,Vmax没有改变,但Km大幅增加。根据pHo、[Na+]o和[HCO3-]o在pHi调节系统中的作用对动力学数据进行了讨论。

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