Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.
Inorg Chem. 2009 Mar 16;48(6):2449-55. doi: 10.1021/ic8019183.
In this paper, inhibition of the glutathione peroxidase activity of two synthetic organoselenium compounds, bis[2-(N,N-dimethylamino)benzyl]diselenide (5) and bis[2-(N,N-dimethylamino)benzyl]selenide (9), by gold(I) thioglucose (1), chloro(triethylphosphine)gold(I), chloro(trimethylphosphine)gold(I), and chloro(triphenylphosphine)gold(I) is described. The inhibition is found to be competitive with respect to a peroxide (H(2)O(2)) substrate and noncompetitive with respect to a thiol (PhSH) cosubstrate. The diselenide 5 reacts with PhSH to produce the corresponding selenol (6), which upon treatment with 1 equiv of gold(I) chlorides produces the corresponding gold selenolate complexes 11-13. However, the addition of 1 equiv of selenol 6 to complexes 11-13 leads to the formation of bis-selenolate complex 14 by ligand displacement reactions involving the elimination of phosphine ligands. The phosphine ligands eliminated from these reactions are further converted to the corresponding phosphine oxides (R(3)P=O) and selenides (R(3)P=Se). In addition to the replacement of the phosphine ligand by selenol 6, an interchange between two different phosphine ligands is also observed. For example, the reaction of complex 11 having a trimethylphosphine ligand with triphenylphosphine produces complex 13 by phosphine interchange reactions via the formation of intermediates 15 and 16. The reactivity of selenol 6 toward gold(I) phosphines is found to be similar to that of selenocysteine.
本文描述了两种合成有机硒化合物,双[2-(N,N-二甲基氨基)苄基]二硒化物(5)和双[2-(N,N-二甲基氨基)苄基]硒化物(9)的谷胱甘肽过氧化物酶活性被金(I)硫代葡萄糖(1)、氯(三乙膦)金(I)、氯(三甲基膦)金(I)和氯(三苯基膦)金(I)抑制。抑制作用被发现对过氧化物(H2O2)底物是竞争性的,对硫醇(PhSH)共底物是非竞争性的。二硒化物 5 与 PhSH 反应生成相应的硒醇(6),当用 1 当量的金(I)氯化物处理时,生成相应的金硒化物配合物 11-13。然而,向配合物 11-13 中加入 1 当量的硒醇 6,通过涉及膦配体消除的配体取代反应,形成双硒醇配合物 14。从这些反应中消除的膦配体进一步转化为相应的膦氧化物(R3P=O)和硒化物(R3P=Se)。除了被硒醇 6 取代的膦配体外,还观察到两个不同的膦配体之间的交换。例如,具有三甲基膦配体的配合物 11 与三苯基膦反应,通过形成中间体 15 和 16 通过膦交换反应生成配合物 13。发现硒醇 6 对金(I)膦的反应性与硒半胱氨酸相似。