Meng Rong, Becker James, Lin Fu-Tyan, Saxena Sunil, Weber Stephen G
Department of Chemistry, University of Pittsburgh, Chevron Science Center, Pittsburgh, PA 15260, USA.
Inorganica Chim Acta. 2005 Jun 15;358(10):2933-2942. doi: 10.1016/j.ica.2004.11.045.
Spectroscopy (UV-Vis, (1)H NMR, ESR) and electrochemistry revealed details of the structure of the Cu(II)-TRH (pyroglutamyl-histidyl-prolyl amide) complex. The (1)H NMR spectrum of TRH has been assigned. NMR spectra of TRH in the presence of Cu(II) showed that Cu(II) initially binds TRH through the imidazole. TRH analogs, pGlu-His-Pro-OH, pGlu-(1-Me)His-Pro-amide, pGlu-His-(3,4-dehydro)Pro-amide, pGlu-His-OH, pGlu-Glu-Pro-amide, and pGlu-Phe-Pro-amide provided comparison data. The stoichiometry of the major Cu(II)-TRH complex at pH 7.45 and greater is 1:1. The conditional formation constant (in pH 9.84 borate with 12.0 mM tartrate) for the formation of the complex is above 10(5) M(-1). The coordination starts from the 1-N of the histidyl imidazole, and then proceeds along the backbone involving the deprotonated pGlu-His amide and the lactam nitrogen of the pGlu residue. The fourth equatorial donor is an oxygen donor from water. Hydroxide begins to replace the water before the pH reaches 11. Minority species with stoichiometry of Cu-(TRH)(x) (x = 2-4) probably exist at pH lower than 8.0. In non-buffered aqueous solutions, TRH acts as a monodentate ligand and forms a Cu(II)-(TRH)(4) complex through imidazole nitrogens. All the His-containing analogs behave like TRH in terms of the above properties.
光谱学(紫外-可见光谱、¹H NMR、电子自旋共振)和电化学揭示了铜(II)-TRH(焦谷氨酰-组氨酰-脯氨酰胺)配合物的结构细节。已对TRH的¹H NMR谱进行了归属。在铜(II)存在下TRH的NMR谱表明,铜(II)最初通过咪唑与TRH结合。TRH类似物,如焦谷氨酰-组氨酰-脯氨酸、焦谷氨酰-(1-甲基)组氨酰-脯氨酰胺、焦谷氨酰-组氨酰-(3,4-脱氢)脯氨酰胺、焦谷氨酰-组氨酸、焦谷氨酰-谷氨酸-脯氨酰胺和焦谷氨酰-苯丙氨酰-脯氨酰胺提供了比较数据。在pH 7.45及更高时,主要的铜(II)-TRH配合物的化学计量比为1:1。该配合物形成的条件形成常数(在pH 9.84的硼酸盐中,含有12.0 mM酒石酸盐)高于10⁵ M⁻¹。配位从组氨酰咪唑的1-N开始,然后沿着主链进行,涉及去质子化的焦谷氨酰-组氨酰胺和焦谷氨酰残基的内酰胺氮。第四个赤道配体是来自水的氧供体。在pH达到11之前,氢氧根开始取代水。在pH低于8.0时可能存在化学计量比为Cu-(TRH)ₓ(x = 2 - 4)的少数物种。在非缓冲水溶液中,TRH作为单齿配体,通过咪唑氮形成铜(II)-(TRH)₄配合物。就上述性质而言,所有含组氨酸的类似物的行为都与TRH相似。