Scheller K H, Abel T H, Polanyi P E, Wenk P K, Fischer B E, Sigel H
Eur J Biochem. 1980 Jun;107(2):455-66.
The acidity constant of protonated 2-[bis(2-hydroxyethyl)amino]-2(hydroxymethyl)-1,3-propanediol (Bistris) has been measured. The influence of hydroxo groups on the basicity of Bistris and related bases is discussed. The interaction of Bistris with the metal ions (M2+) Mg2+, Ca2+, Sr2+, Ba2+, Mn2+, Co2+, Ni2+, Cu2+, Zn2+, Cd2+, and Pb2+ was studied by potentiometry and spectrophotometry in aqueous solution (I = 1.0 M, KNO3; 25 degrees C) and the stability constants of the M(Bistris)2+ complexes were determined. Unexpectedly Ca(Bistris)2+ is the most stable among the alkaline earth ion complexes (log KCaCa(Bistris) = 2.25; the corresponding values for the Mg2+, Sr2+ and Ba2+ complexes are 0.34, 1.44 and 0.85, respectively). The ions of the 3d series follow the Irving-Williams sequence: log KMnMn(Bistris) = 0.70, for Cu2+, 5.27 and Zn2+ 2.38. Ternary complexes containing ATP4- as a second ligand were also investigated: the values for delta log KM (= log KM(ATP)M(ATP)(Bistris) -log KMM(Bistris) are in general negative (e.g. delta log KCa = -0.40 or delta log KCu = -1.65), thus indicating that the interaction of Bistris with M(ATP)2- is somewhat less pronounced tan with M2+. However, even in mixed-ligand systems, complex formation may still be considerable, hence great reservations should be exercised in employing Bistris as a buffer in systems containing metal ions. Moreover, in several cases delta log KM is relatively high [for Mg2+-ATP4- -Bistris even positive], indicating some cooperativity between the coordinated ligands, possibly hydrogen-bond formation. Distributions of the complexes in dependence on pH are given, and the structures of the binary M(Bistris)2+ and the ternary M(ATP) (Bistris)2- complexes are discussed. The participation of Bistris hydroxo groups in complex formation is evident.
已测定质子化的2-[双(2-羟乙基)氨基]-2-(羟甲基)-1,3-丙二醇(Bistris)的酸度常数。讨论了羟基对Bistris及相关碱碱性的影响。通过电位滴定法和分光光度法研究了Bistris与金属离子(M2+)Mg2+、Ca2+、Sr2+、Ba2+、Mn2+、Co2+、Ni2+、Cu2+、Zn2+、Cd2+和Pb2+在水溶液(I = 1.0 M,KNO3;25℃)中的相互作用,并测定了M(Bistris)2+配合物的稳定常数。出乎意料的是,在碱土金属离子配合物中Ca(Bistris)2+最稳定(log KCaCa(Bistris) = 2.25;Mg2+、Sr2+和Ba2+配合物的相应值分别为0.34、1.44和0.85)。3d系列离子遵循欧文-威廉姆斯序列:log KMnMn(Bistris) = 0.70,Cu2+为5.27,Zn2+为2.38。还研究了含有ATP4-作为第二配体的三元配合物:Δlog KM(= log KM(ATP)M(ATP)(Bistris) - log KMM(Bistris))的值通常为负(例如Δlog KCa = -0.40或Δlog KCu = -1.65),这表明Bistris与M(ATP)2-的相互作用不如与M2+的明显。然而,即使在混合配体体系中,配合物的形成仍可能相当可观,因此在含有金属离子的体系中使用Bistris作为缓冲剂时应格外谨慎。此外,在几种情况下,Δlog KM相对较高[对于Mg2+-ATP4- -Bistris甚至为正],表明配位配体之间存在一些协同作用,可能形成了氢键。给出了配合物随pH的分布情况,并讨论了二元M(Bistris)2+和三元M(ATP)(Bistris)2-配合物的结构。Bistris羟基参与配合物形成是明显的。