Maeda Dean Y, Mahajan Sumit S, Atkins William M, Zebala John A
Syntrix Biosytems, Auburn, WA 98001, USA.
Bioorg Med Chem Lett. 2006 Jul 15;16(14):3780-3. doi: 10.1016/j.bmcl.2006.04.041. Epub 2006 May 3.
Glutathione S-transferases (GSTs) are cytosolic enzymes that catalyze the conjugation of glutathione with a variety of exogenous and endogenous electrophiles. High affinity, isozyme-specific inhibitors of GST are required for use as pharmacological tools as well as potential therapeutics. The design of selective inhibitors is hindered due to the broad substrate binding capabilities of the GST enzymes. GSTs are dimeric enzymes, and therefore offer a unique discriminator for achieving inhibitor selectivity: the distance between binding sites on each monomer unit as a function of its quaternary organization. Bivalent analogs of the non-selective GST inhibitor ethacrynic acid were prepared, and selectivity for the GST A1-1 isozyme over GST P1-1 (IC50 values of 13.7 vs 1022 nM, respectively) was achieved through the optimization of the spacer length between the ethacrynic acid ligand domains.
谷胱甘肽S-转移酶(GSTs)是一类胞质酶,可催化谷胱甘肽与多种外源性和内源性亲电试剂的结合反应。作为药理学工具以及潜在的治疗药物,需要高亲和力、同工酶特异性的GST抑制剂。由于GST酶具有广泛的底物结合能力,选择性抑制剂的设计受到阻碍。GSTs是二聚体酶,因此为实现抑制剂选择性提供了一个独特的区分因素:每个单体单元上结合位点之间的距离与其四级结构的关系。制备了非选择性GST抑制剂依他尼酸的二价类似物,并通过优化依他尼酸配体结构域之间的间隔长度,实现了对GST A1-1同工酶相对于GST P1-1的选择性(IC50值分别为13.7 nM和1022 nM)。