Castaing M, Lehn J M
Laboratoire de Physiologie Cellulaire, Collège de France, Paris.
J Membr Biol. 1987;97(2):79-95. doi: 10.1007/BF01869415.
The kinetics of Na+ and K+ transport across the membrane of large unilamellar vesicles (LUV) were determined at two pH's when transport was induced by (221)C10-cryptand (diaza-1,10-decyl-5-pentaoxa-4,7,13,16,21-bicyclo [8.8.5.] tricosane) at various temperatures, and by nonactin at 25 degrees C and (222)C10-cryptand at 20 and 25 degrees C. The rate of Na+ and K+ transport by (221)C10 saturated with the cation and carrier concentrations. Transport was noncooperative and exhibited selectivity for Na+ with respect to K+. The apparent affinity of (221)C10 for Na+ was higher and less pH-dependent than that for K+, and seven times higher than the affinity for Na+ of nonactin. Its enthalpy was higher than that of (222)C10 for K+ ions (20.5 vs. 1.7 kcal . mole-1). The efficiency of (221)C10 transport of Na+ was pH- and carrier concentration-dependent, and was similar to that of nonactin; its activation energy was similar to that for (222)C10 transport of K+ (35.5 and 29.7 kcal . mole-1, respectively). The reaction orders in cation n(S) and in carrier m(M), respectively, increased and decreased as the temperature rose, and were both independent of carrier or cation concentrations; in most cases, they varied slightly with the pH. n(S) varied with the cation at pH 8.7 and with the carrier for Na+ transport only, while m(M) always depended on the type of cation and carrier. Results are discussed in terms of the structural, physico-chemical and electrical characteristics of carriers and complexes.
在不同温度下,当由(221)C10 - 穴醚(二氮杂 - 1,10 - 癸基 - 5 - 五氧杂 - 4,7,13,16,21 - 双环[8.8.5.]二十三烷)诱导转运时,以及在25℃由非actin和在20℃及25℃由(222)C10 - 穴醚诱导转运时,测定了Na⁺和K⁺跨大单层囊泡(LUV)膜转运的动力学。(221)C10对Na⁺和K⁺的转运速率取决于阳离子和载体浓度。转运是非协同的,且对Na⁺相对于K⁺具有选择性。(221)C10对Na⁺的表观亲和力高于对K⁺的表观亲和力,且对pH的依赖性较小,比对非actin对Na⁺的亲和力高7倍。其焓高于(222)C10对K⁺离子的焓(20.5对1.7千卡·摩尔⁻¹)。(221)C10转运Na⁺的效率取决于pH和载体浓度,与非actin的相似;其活化能与(222)C10转运K⁺的相似(分别为35.5和29.7千卡·摩尔⁻¹)。阳离子反应级数n(S)和载体反应级数m(M)分别随着温度升高而增加和降低,且均与载体或阳离子浓度无关;在大多数情况下,它们随pH略有变化。n(S)在pH为8.7时随阳离子变化,仅在Na⁺转运时随载体变化,而m(M)总是取决于阳离子和载体的类型。根据载体和配合物的结构、物理化学和电学特性对结果进行了讨论。