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首页> 外文期刊>Journal of the American Chemical Society >Optimization of bivalent glutathione S-transferase inhibitors by combinatorial linker design
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Optimization of bivalent glutathione S-transferase inhibitors by combinatorial linker design

机译:通过组合接头设计优化二价谷胱甘肽S-转移酶抑制剂

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Dimeric glutathione S-transferases (GSTs) are pharmacological targets for several diseases, including cancer. Isoform specificity has been difficult to achieve due to their overlapping substrate selectivity. Here we demonstrate the utility of bivalent GST inhibitors and their optimization via combinatorial linker design. A combinatorial library with dipeptide linkers emanating symmetrically from a central scaffold (bis-3,5-aminomethyl benzoic acid, AMAB) to connect two ethacrynic acid moieties was prepared and decoded via iterative deconvolution, against the isoforms GSTA1-1 and GSTP1-1. The library yielded high affinity GSTA1-1 selective inhibitors (70-120-fold selectivity) and with stoichiometry of one inhibitor: one GSTA1-1 dimer. Saturation Transfer Difference (STD) NMR with one of these inhibitors, with linker structure (Asp-Gly-AMAB-Gly-Asp) and K-D = 42 nM for GSTA1-1, demonstrates that the Asp-Gly linker interacts tightly with GSTA1-1, but not P1-1. H/D exchange mass spectrometry was used to map the protein binding site and indicates that peptides within the intersubunit cleft and in the substrate binding site are protected by inhibitor from solvent exchange. A model is proposed for the binding orientation of the inhibitor, which is consistent with electrostatic complementarity between the protein cleft and inhibitor linker as the source of isoform selectivity and high affinity. The results demonstrate the utility of combinatorial, or "irrational", linker design for optimizing bivalent inhibitors.
机译:二聚体谷胱甘肽S-转移酶(GST)是几种疾病(包括癌症)的药理学靶标。由于它们重叠的底物选择性,很难实现亚型特异性。在这里,我们展示了二价GST抑制剂的效用及其通过组合接头设计的优化。制备了具有二肽接头的组合文库,该文库从中央支架(bis-3,5-氨基甲基苯甲酸,AMAB)对称地连接两个乙炔酸部分,并通过迭代解卷积对同工型GSTA1-1和GSTP1-1进行解码。该文库产生了高亲和力的GSTA1-1选择性抑制剂(选择性为70-120倍),并且化学计量为一种抑制剂:一种GSTA1-1二聚体。其中一种抑制剂的饱和转移差异(STD)NMR(具有接头结构(Asp-Gly-AMAB-Gly-Asp)和GSTA1-1的KD = 42 nM)表明,Asp-Gly接头与GSTA1-1紧密相互作用,但不是P1-1。 H / D交换质谱法用于绘制蛋白质结合位点的图谱,并表明亚单位间裂隙和底物结合位点中的肽受抑制剂保护,免于溶剂交换。提出了抑制剂结合方向的模型,该模型与蛋白裂缝和抑制剂接头之间的静电互补作用是同工型选择性和高亲和力的来源。结果证明了组合的或“不合理的”接头设计用于优化二价抑制剂的效用。

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