Dipartimento di Scienze Chimiche, Università degli Studi di Catania, Viale A. Doria 6, 95125 Catania, Italy.
Consiglio nazionale delle Ricerche, Istituto di Microelettronica e Microsistemi, Via S. Sofia 64, 95123 Catania, Italy.
J Inorg Biochem. 2019 Feb;191:40-48. doi: 10.1016/j.jinorgbio.2018.10.012. Epub 2018 Nov 3.
Ternary copper(II) complexes with 1,10‑phenanthroline and the aminoacids l‑arginine, l‑aspartic acid, l‑histidine, l‑glutamic acid, l‑glutamine, l‑leucine, l‑lysine, l‑methionine, l‑phenylalanine, l‑tryptophan, l‑tyrosine, l‑valine, were studied in aqueous solution by means of UV-Vis-NIR spectrophotometry, EPR spectroscopy either at room or at low temperatures, and Square Wave Voltammetry. From the experimental data it is possible to conclude that most of these ternary complexes show a pseudo-octahedral geometry with a CuNO in plane chromophore and two oxygen atoms coming from water molecules perpendicularly bound to the equatorial plane. An exception to this general behaviour is given by the ternary copper(II) complex with 1,10‑phenanthroline and histidine at pH value near the neutrality because of the terdentate nature of histidine when it coordinates by means of its histamine-like mode. In this case, evidence for a probable square-based pyramidal stereochemistry is given in support. At pH values around 5 the histidine behaves as bidentate ligand coordinating by its glycine-like mode, so as the copper(II) ternary complex with 1,10‑phenathroline shows the pseudo-octahedral geometry found for all the ternary complexes with the other aminoacids. Moreover the ternary complex species with histidine at pH 5 and 7 are in equilibrium with each other as a function of the aqueous solution pH value and the temperature. In fact, the examination of low temperature EPR spectra at pH near 7 revealed not only a square-based pyramid complex but also products of decomposition. These results were also confirmed by the trend found in the formal redox potentials by the voltammetric measurements on many of these ternary complexes.
三元铜(II)配合物与 1,10-菲啰啉和氨基酸 l-精氨酸、l-天冬氨酸、l-组氨酸、l-谷氨酸、l-谷氨酰胺、l-亮氨酸、l-赖氨酸、l-甲硫氨酸、l-苯丙氨酸、l-色氨酸、l-酪氨酸、l-缬氨酸,在水溶液中通过紫外可见近红外光谱、室温或低温下的电子顺磁共振光谱以及方波伏安法进行了研究。从实验数据可以得出结论,大多数这些三元配合物显示出具有 CuNO 面内发色团的假八面体几何形状,以及两个来自水分子的氧原子垂直结合到赤道平面。这种一般行为的一个例外是 pH 值接近中性的 1,10-菲啰啉与组氨酸的三元铜(II)配合物,因为组氨酸在通过其组氨酸样模式配位时具有三齿性质。在这种情况下,给出了支持可能的正方形基三角锥形立体化学的证据。在 pH 值约为 5 时,组氨酸作为双齿配体通过其甘氨酸样模式配位,因此与 1,10-菲啰啉的铜(II)三元配合物显示出与其他氨基酸的所有三元配合物发现的假八面体几何形状。此外,在 pH 值为 5 和 7 时,组氨酸的三元配合物物种彼此处于平衡状态,这是作为水溶液 pH 值和温度的函数。事实上,在 pH 值接近 7 时低温 EPR 光谱的检查不仅揭示了一个正方形基三角锥形配合物,而且还揭示了分解产物。这些结果也通过在许多这些三元配合物的伏安测量中找到的形式氧化还原电位的趋势得到了证实。