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谷胱甘肽S-转移酶π与依他尼酸及其谷胱甘肽共轭物的相互作用。

Interactions of glutathione S-transferase-pi with ethacrynic acid and its glutathione conjugate.

作者信息

Awasthi S, Srivastava S K, Ahmad F, Ahmad H, Ansari G A

机构信息

Division of Hematology and Oncology, University of Texas Medical Branch, Galveston 77555-0565.

出版信息

Biochim Biophys Acta. 1993 Jul 10;1164(2):173-8. doi: 10.1016/0167-4838(93)90245-m.

Abstract

Ethacrynic acid, a diuretic drug known to be an inhibitor of glutathione S-transferases (GSTs), has been shown to enhance the cytotoxicity of the alkylating agent class of chemotherapeutic drugs in cultured cancer cells resistant to alkylating agents. This action of ethacrynic acid is presumably mediated by inhibition of GSTs which are implicated in detoxification of alkylating agents. In addition to being an inhibitor of GSTs, ethacrynic acid also interacts with GSTs as a substrate for conjugation with GSH to yield an ethacrynic acid-GSH conjugate. This conjugate is formed both enzymatically and non-enzymatically and itself is a GST inhibitor. Since ethacrynic acid-GSH conjugate is itself likely to be able to mediate reversal of alkylating agents through GST inhibition, we have synthesized and purified the ethacrynic acid-GSH conjugate, studied the kinetics of inhibition of human lung pi-class GST by ethacrynic acid and the conjugate, and compared the kinetics of the enzymatic and non-enzymatic formation of the conjugate using an HPLC method. Results of our studies showed that the ethacrynic acid-GSH conjugate was a more potent inhibitor of human lung GST-pi than ethacrynic acid (Ki = 1.5 vs. 11.5 microM, respectively) and that their mechanisms for GST inhibition were distinct (competitive and non-competitive, respectively). Comparison of enzymatic and non-enzymatic rates of conjugate formation in vitro indicated that GST-pi catalyzed a rapid conjugation of ethacrynic acid with GSH at a concentration of ethacrynic acid an order of magnitude above that required to nearly completely inhibit GST catalyzed conjugation of 1-chloro-2,4-dinitrobenzene. However, because of the rapid non-enzymatic reaction, and the inhibition of GST-pi with the accumulation of the conjugate in the reaction mixture, the overall quantity of the conjugate formed after 150 min was nearly identical in the presence or absence of GST-pi. Results of these studies suggest that inhibition of GSTs by ethacrynic acid-GSH conjugate may be the main mechanism through which ethacrynic acid reverses alkylating agent resistance.

摘要

依他尼酸是一种已知的谷胱甘肽S-转移酶(GSTs)抑制剂利尿药物,已被证明可增强对烷化剂耐药的培养癌细胞中烷化剂类化疗药物的细胞毒性。依他尼酸的这种作用可能是通过抑制与烷化剂解毒有关的GSTs介导的。除了是GSTs的抑制剂外,依他尼酸还作为与谷胱甘肽(GSH)结合的底物与GSTs相互作用,生成依他尼酸-GSH共轭物。这种共轭物通过酶促和非酶促方式形成,其本身也是一种GST抑制剂。由于依他尼酸-GSH共轭物本身可能能够通过抑制GSTs介导烷化剂的逆转作用,我们合成并纯化了依他尼酸-GSH共轭物,研究了依他尼酸和该共轭物对人肺pi类GST的抑制动力学,并使用高效液相色谱法比较了共轭物的酶促和非酶促形成动力学。我们的研究结果表明,依他尼酸-GSH共轭物比依他尼酸对人肺GST-pi的抑制作用更强(Ki分别为1.5和11.5 microM),并且它们抑制GST的机制不同(分别为竞争性和非竞争性)。体外共轭物形成的酶促和非酶促速率比较表明,在依他尼酸浓度比几乎完全抑制GST催化的1-氯-2,4-二硝基苯共轭所需浓度高一个数量级时,GST-pi催化依他尼酸与GSH快速结合。然而,由于快速的非酶促反应,以及共轭物在反应混合物中的积累对GST-pi的抑制作用,在有或没有GST-pi的情况下,150分钟后形成的共轭物总量几乎相同。这些研究结果表明,依他尼酸-GSH共轭物对GSTs的抑制作用可能是依他尼酸逆转烷化剂耐药性的主要机制。

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