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使用与具有不同底物特异性的谷胱甘肽立体异构体偶联的阿霉素,研究其细胞杀伤活性与谷胱甘肽-S-转移酶抑制之间的关系。

Relationship between cytocidal activity and glutathione-S-transferase inhibition using doxorubicin coupled to stereoisomers of glutathione with different substrate specificity.

作者信息

Hashizume Y, Asakura T, Oikawa T, Yamauchi T, Soda K, Ohkawa K

机构信息

Departments of Biochemistry I, Jikei University School of Medicine, Tokyo 105-8461, Japan.

出版信息

Anticancer Drugs. 2001 Jul;12(6):549-54. doi: 10.1097/00001813-200107000-00009.

Abstract

To determine the cytotoxic mode of action of a glutathione (GSH)--doxorubicin (DXR) conjugate, which exhibited potent cytotoxicity against various multidrug-resistant as well as DXR-sensitive cell lines, the molecular interaction between covalent GSH--DXR conjugates and glutathione-S-transferase (GST), a possible molecular target of the conjugates, was investigated. The following four GSH molecules with stereoisomeric forms were prepared: L-Glu--L-Cys--Gly (LL-GSH), D-Glu--L-Cys--Gly (DL-GSH), L-Glu--D-Cys--Gly (LD-GSH) and D-Glu--D-Cys--Gly (DD-GSH). The enzymic activity of GST against each GSH stereoisomer was 88, 38, 8 and 4 nmol/mg/min, respectively, suggesting that the L-form cysteine residue in the molecule was an important substrate of GST. Addition of DXR conjugated with each isomer (10 microM) to a GSH-containing GST assay mixture inhibited the GST activity to 32% for LL-GSH--XR, 16% for DL-GSH-DXR and 61% for LD-GSH-DXR as compared with the solvent control. Moreover, IC50 values for these conjugates were 30, 20 and 250 nM, respectively. The cytocidal activity of each conjugate corresponded to the substrate specificity of GST activity for the GSH isomer. These conjugates bound to the GST molecule, and the binding ability was 0.746, 0.627 and 0.462 mol/mol of GST for LL-GSH--XR, DL-GSH-DXR and LD-GSH--XR, respectively. These findings suggested that GSH--DXR interacted with the substrate-binding site of the GST molecule and inhibition of GST activity exhibited potent cytotoxicity.

摘要

为确定谷胱甘肽(GSH)-阿霉素(DXR)偶联物的细胞毒性作用模式,该偶联物对多种多药耐药以及对DXR敏感的细胞系均表现出强大的细胞毒性,研究了共价GSH-DXR偶联物与谷胱甘肽-S-转移酶(GST)(该偶联物可能的分子靶点)之间的分子相互作用。制备了以下四种具有立体异构形式的GSH分子:L-谷氨酸-L-半胱氨酸-甘氨酸(LL-GSH)、D-谷氨酸-L-半胱氨酸-甘氨酸(DL-GSH)、L-谷氨酸-D-半胱氨酸-甘氨酸(LD-GSH)和D-谷氨酸-D-半胱氨酸-甘氨酸(DD-GSH)。GST对每种GSH立体异构体的酶活性分别为88、38、8和4 nmol/mg/分钟,这表明分子中的L型半胱氨酸残基是GST的重要底物。与溶剂对照相比,向含GSH的GST检测混合物中添加与每种异构体偶联的DXR(10 μM),LL-GSH-XR使GST活性抑制至32%,DL-GSH-DXR使其抑制至16%,LD-GSH-DXR使其抑制至61%。此外,这些偶联物的半数抑制浓度(IC50)值分别为30、20和250 nM。每种偶联物的杀细胞活性与GST活性对GSH异构体的底物特异性相对应。这些偶联物与GST分子结合,LL-GSH-XR、DL-GSH-DXR和LD-GSH-XR与GST的结合能力分别为0.746、0.627和0.462 mol/mol。这些发现表明,GSH-DXR与GST分子的底物结合位点相互作用,对GST活性的抑制表现出强大的细胞毒性。

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