Beijing National Laboratory for Molecular Sciences, Beijing 100190, PR China; CAS Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, PR China.
J Inorg Biochem. 2013 Nov;128:77-84. doi: 10.1016/j.jinorgbio.2013.07.029. Epub 2013 Jul 25.
The organometallic ruthenium(II) anticancer complexes (η(6)-arene)Ru(en)Cl (arene = p-cymene (1), biphenyl (2) or 9,10-dihydrophenanthrene (3); en = ethylenediamine), exhibit in vitro and in vivo anticancer activities. In the present work, we show that they inhibit human glutathione-S-transferase π (GSTπ) with IC50 values of 59.4 ± 1.3, 63.2 ± 0.4 and 37.2 ± 1.1 μM, respectively. Mass spectrometry revealed that complex 1 binds to the S-donors of Cys15, Cys48 within the G-site and Cys102 at the interface of the GSTπ dimer, while complex 2 binds to Cys48 and Met92 at the dimer interface and complex 3 to Cys15, Cys48 and Met92. Moreover, the binding of complex 1 to Cys15 and Cys102, complex 2 to Cys48 and complex 3 to Cys15 induces the irreversible oxidation of the coordinated thiolates to sulfenates. Molecular modeling studies indicate that the coordination of the {(arene)Ru(en)}(2+) fragment to Cys48 blocks the hydrophilic G-site sterically, perhaps preventing substrate from proper positioning and accounting for the reduction in enzymatic activity of ruthenated GSTπ. The binding of the ruthenium arene complexes to Cys102 or Met92 disrupts the dimer interface which is an essential structural feature for the proper functioning of GSTπ, perhaps also contributing to the inhibition of GSTπ.
有机金属钌(II)抗癌配合物(η(6)-芳烃)Ru(en)Cl(芳烃=对伞花烃(1)、联苯(2)或 9,10-二氢菲(3);en=乙二胺),具有体外和体内抗癌活性。在本工作中,我们表明它们抑制人谷胱甘肽 S-转移酶 π(GSTπ),IC50 值分别为 59.4±1.3、63.2±0.4 和 37.2±1.1 μM。质谱显示,配合物 1 与 G-位点的 Cys15、Cys48 和 GSTπ 二聚体界面的 Cys102 的 S 供体结合,而配合物 2 与二聚体界面的 Cys48 和 Met92 结合,配合物 3 与 Cys15、Cys48 和 Met92 结合。此外,配合物 1 与 Cys15 和 Cys102、配合物 2 与 Cys48 和配合物 3 与 Cys15 的结合诱导配位硫醇的不可逆氧化为亚磺酸盐。分子建模研究表明,{(芳烃)Ru(en)}(2+)片段与 Cys48 的配位在空间上阻止了亲水性 G-位点,可能阻止底物的正确定位,并解释了钌化 GSTπ 酶活性的降低。钌芳烃配合物与 Cys102 或 Met92 的结合破坏了 GSTπ 正常功能所必需的二聚体界面,这可能也有助于 GSTπ 的抑制。