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谷胱甘肽 S-转移酶 P1-1 的非解毒相关调节功能。

Regulatory functions of glutathione S-transferase P1-1 unrelated to detoxification.

机构信息

Department of Cell and Molecular Pharmacology and Experimental Therapeutics, Medical University of South Carolina, 173 Ashley Avenue, Charleston, SC 29425-5050, USA.

出版信息

Drug Metab Rev. 2011 May;43(2):179-93. doi: 10.3109/03602532.2011.552912. Epub 2011 Feb 25.

Abstract

Glutathione S-transferase P1-1 (GSTP) is one member of the family of GSTs and is ubiquitously expressed in human tissues. The literature is replete with reports of high levels of GSTP linked either with cancer incidence or drug resistance, and yet no entirely cogent explanation for these correlations exists. The catalytic detoxification properties of the GST isozyme family have been a primary research focus for the last four decades. However, it has become apparent that they have undergone structural and functional convergence where evolutionary selective pressures have favored the emergence of noncatalytic properties of GSTP that has imbued this isozyme with expanded biological importance. For example, GSTP has now been linked with two cell-signaling functions that are critical to survival. Through protein:protein interactions, GSTP can sequester c-jun N-terminal kinase (JNK) and act as a negative regulator of this stress kinase. Pharmacologically, this activity has been linked with the activity of GSTP inhibitors in stimulating myeloproliferation. In addition, GSTP is linked with the forward S-glutathionylation reaction, a post-translational modification that impacts the function/activity of a number of proteins. Catalytic reversal of S-glutathionylation is well characterized, but the role of GSTP in catalyzing the forward reaction contributes to the "glutathionylation cycle." Moreover, GSTP is itself susceptible to S-glutathionylation, providing an autoregulatory loop for the cycle. Because oxidative stress regulates both S-glutathionylation and JNK-signaling pathways, such links may help to explain the aberrant patterns of GSTP expression in the cancer phenotype. As such, there is an ongoing preclinical and clinical platform of drug discovery and development around GSTP.

摘要

谷胱甘肽 S-转移酶 P1-1(GSTP)是 GST 家族的一员,在人体组织中广泛表达。文献中充斥着 GSTP 水平与癌症发病率或耐药性相关的高报道,但对于这些相关性没有一个完全合理的解释。 GST 同工酶家族的催化解毒特性一直是过去四十年的主要研究重点。然而,很明显,它们已经经历了结构和功能的趋同,进化选择压力有利于 GSTP 非催化特性的出现,从而赋予该同工酶扩展的生物学重要性。例如,GSTP 现在与两种对生存至关重要的细胞信号转导功能有关。通过蛋白:蛋白相互作用,GSTP 可以隔离 c-jun N 末端激酶(JNK),并作为这种应激激酶的负调节剂。药理学上,这种活性与 GSTP 抑制剂刺激髓系增殖的活性有关。此外,GSTP 与正向 S-谷胱甘肽化反应有关,这是一种影响许多蛋白质功能/活性的翻译后修饰。 S-谷胱甘肽化的催化逆转已有很好的描述,但 GSTP 在催化正向反应中的作用有助于“谷胱甘肽化循环”。此外,GSTP 本身易受 S-谷胱甘肽化影响,为该循环提供了一个自身调节回路。由于氧化应激调节 S-谷胱甘肽化和 JNK 信号通路,因此这些联系可能有助于解释 GSTP 在癌症表型中异常表达的模式。因此,围绕 GSTP 正在进行临床前和临床药物发现和开发的平台。

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