Krinulović Katarina S, Vasić Vesna M
Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, P.O. Box 522, Belgrade 11001, Serbia & Montenegro.
J Enzyme Inhib Med Chem. 2006 Aug;21(4):459-65. doi: 10.1080/14756360600628510.
The aim of this work was to investigate the influence of [PdCl4]2-, [PdCl(dien)]+ and [PdCl(Me4dien)]+ complexes on Na+ / K+-ATPase activity. The dose-dependent inhibition curves were obtained in all cases. IC50 values determined by Hill analysis were 2.25 x 10(-5) M, 1.21 x 10(-4) M and 2.36 x 10(-4) M, respectively. Na+ / K+-ATPase exhibited typical Michelis-Menten kinetics in the presence of Pd(II) complexes. Kinetic parameters (Vmax, Km) derived using Eadie-Hofstee transformation indicated a noncompetitive type of Na+ / K+-ATPase inhibition. The inhibitor constants (Ki) were determined from Dixon plots. The order of complex affinity for binding with Na+ / K+-ATPase, deducted from Ki values, was [PdCl4]2- > [PdCl(dien)]+ > [PdCl(Me4dien)]+. The results indicated that the potency of Pd(II) complexes to inhibit Na+/ K +-ATPase activity depended strongly on ligands of the related compound. Furthermore, the ability of SH-donor ligands, L-cysteine and glutathione, to prevent and recover the Pd(II) complexes-induced inhibition of Na+ / K+-ATPase was examined. The addition of 1 mM L-cysteine or glutathione to the reaction mixture before exposure to Pd(II) complexes prevented the inhibition by increasing the IC50 values by one order of magnitude. Moreover, the inhibited enzymatic activity was recovered by addition of SH-donor ligands in a concentration-dependent manner.
本研究旨在探讨[PdCl4]2-、[PdCl(dien)]+和[PdCl(Me4dien)]+配合物对Na+/K+-ATP酶活性的影响。在所有情况下均获得了剂量依赖性抑制曲线。通过希尔分析确定的IC50值分别为2.25×10(-5)M、1.21×10(-4)M和2.36×10(-4)M。在Pd(II)配合物存在下,Na+/K+-ATP酶表现出典型的米氏动力学。使用伊迪-霍夫斯泰变换得出的动力学参数(Vmax、Km)表明Na+/K+-ATP酶抑制为非竞争性类型。抑制剂常数(Ki)由狄克逊图确定。从Ki值推断,配合物与Na+/K+-ATP酶结合的亲和力顺序为[PdCl4]2- > [PdCl(dien)]+ > [PdCl(Me4dien)]+。结果表明,Pd(II)配合物抑制Na+/K+-ATP酶活性的效力强烈依赖于相关化合物的配体。此外,还研究了SH供体配体L-半胱氨酸和谷胱甘肽预防和恢复Pd(II)配合物诱导的Na+/K+-ATP酶抑制的能力。在暴露于Pd(II)配合物之前,向反应混合物中添加1 mM L-半胱氨酸或谷胱甘肽可通过将IC50值提高一个数量级来防止抑制。此外,添加SH供体配体可使被抑制的酶活性以浓度依赖性方式恢复。