Singh Simendra
Department of Biotechnology, School of Engineering and Technology, Sharda University, Gautam Buddha Nagar, Greater Noida, UP, India,
Cancer Chemother Pharmacol. 2015 Jan;75(1):1-15. doi: 10.1007/s00280-014-2566-x. Epub 2014 Aug 21.
Glutathione S-transferases (GSTs) family of enzymes is best known for their cytoprotective role and their involvement in the development of anticancer drug resistance. Recently, emergence of non-detoxifying properties of GSTs has provided them with significant biological importance. Addressing the complex interactions of GSTs with regulatory kinases will help in understanding its precise role in tumor pathophysiology and in designing GST-centered anticancer strategies.
We reviewed all published literature addressing the detoxification and regulatory roles of GSTs in the altered biology of cancer and evaluating novel agents targeting GSTs for cancer therapy.
The role of GSTs, especially glutathione S-transferase P1 isoform in tumoral drug resistance, has been the cause of intense debate. GSTs have been demonstrated to interact with different protein partners and modulate signaling pathways that control cell proliferation, differentiation and apoptosis. These specific functions of GSTs could lead to the development of new therapeutic approaches and to the identification of some interesting candidates for preclinical and clinical development. This review focuses on the crucial role played by GSTs in the development of resistance to anticancer agents and the major findings regarding the different modes of action of GSTs to regulate cell signaling.
谷胱甘肽S-转移酶(GSTs)家族的酶因其细胞保护作用以及参与抗癌药物耐药性的发展而最为人所知。最近,GSTs的非解毒特性的出现赋予了它们重要的生物学意义。研究GSTs与调节激酶之间的复杂相互作用将有助于理解其在肿瘤病理生理学中的精确作用,并有助于设计以GSTs为中心的抗癌策略。
我们回顾了所有已发表的文献,这些文献涉及GSTs在癌症生物学改变中的解毒和调节作用,以及评估针对GSTs的新型癌症治疗药物。
GSTs的作用,尤其是谷胱甘肽S-转移酶P1同工型在肿瘤耐药性中的作用,一直是激烈争论的焦点。已证明GSTs与不同的蛋白质伴侣相互作用,并调节控制细胞增殖、分化和凋亡的信号通路。GSTs的这些特定功能可能会导致新治疗方法的开发,并识别出一些有前景的临床前和临床开发候选药物。本综述重点关注GSTs在抗癌药物耐药性发展中的关键作用,以及关于GSTs调节细胞信号传导不同作用模式的主要研究结果。