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均相溶液中离子载体A23187 - 阳离子络合物的化学计量和稳定性的一般特征。

General features in the stoichiometry and stability of ionophore A23187-cation complexes in homogeneous solution.

作者信息

Chapman C J, Puri A K, Taylor R W, Pfeiffer D R

机构信息

Hormel Institute, University of Minnesota, Austin 55912.

出版信息

Arch Biochem Biophys. 1990 Aug 15;281(1):44-57. doi: 10.1016/0003-9861(90)90411-q.

Abstract

Existing literature describing the stoichiometry and stability of complexes between A23187 and divalent cations in solution has been extended to include additional transition series cations, the heavy-metal cations Cd2+ and Pb2+, plus seven lanthanide series trivalent cations. Stability constants of 1:1 complexes between the ionophore and the divalent cations vary by 6.2 orders of magnitude between Cu2+ and Ba2+ which are the strongest and weakest complexes, respectively. Considering alkaline-earth and first-series transition cations together, the pattern of stability constants obeys the extended Irving-Williams series as is seen with many nonionophorous liganding agents. Cd2+ and Pb2+ are bound with an affinity similar to those of Mn2+ and Zn2+, whereas the lanthanides are bound with little selectivity and slightly higher stability. Titration of the ionophore in the 10(-5) M concentration range with di- and trivalent cations gives rise first to complexes of stoichiometry MA2 and subsequently to MA as the metal concentration is increased. The second stepwise stability constants for formation of the MA2 species exceeds the first constant by approximately 10-fold. With lanthanides, heavy metals, and transition-metal cations, OH-, at near physiological concentrations, competes significantly with free ionophore for binding to the 1:1 complexes. This competition is not apparent when Ca2+ or Mg2+ are the central cations. Possible implications of the 1:1 complex selectivity pattern, the ionophore-hydroxide competitive binding equilibria, and potential ternary complexes involving 1:1 ionophore:cation complexes and other anions present in biological systems are discussed with respect to the ionophore's transport selectivity and biological actions.

摘要

现有文献描述了溶液中A23187与二价阳离子之间配合物的化学计量和稳定性,现扩展至包括其他过渡系列阳离子、重金属阳离子Cd2+和Pb2+,以及七种镧系三价阳离子。离子载体与二价阳离子之间1:1配合物的稳定常数在Cu2+和Ba2+之间相差6.2个数量级,分别为最强和最弱的配合物。将碱土金属和第一系列过渡阳离子一起考虑,稳定常数的模式遵循扩展的欧文-威廉姆斯序列,这与许多非离子载体配体试剂的情况相同。Cd2+和Pb2+的结合亲和力与Mn2+和Zn2+相似,而镧系元素的结合选择性较低且稳定性略高。在10(-5) M浓度范围内用二价和三价阳离子滴定离子载体,首先会形成化学计量比为MA2的配合物,随后随着金属浓度的增加形成MA。形成MA2物种的第二步稳定常数比第一步常数大约高1百倍。对于镧系元素、重金属和过渡金属阳离子,在接近生理浓度时,OH-会与游离离子载体显著竞争与1:1配合物的结合。当Ca2+或Mg2+为中心阳离子时,这种竞争并不明显。关于离子载体的运输选择性和生物学作用,讨论了1:1配合物选择性模式、离子载体-氢氧化物竞争结合平衡以及涉及1:1离子载体:阳离子配合物和生物系统中存在的其他阴离子的潜在三元配合物的可能影响。

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