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Theta 类谷胱甘肽转移酶的分子进化以提高与抗癌药物 1,3-双-(2-氯乙基)-1-亚硝脲和其他烷化剂的活性。

Molecular evolution of Theta-class glutathione transferase for enhanced activity with the anticancer drug 1,3-bis-(2-chloroethyl)-1-nitrosourea and other alkylating agents.

机构信息

Department of Biochemistry and Organic Chemistry, Uppsala University, Biomedical Center, SE-751 23 Uppsala, Sweden.

出版信息

Arch Biochem Biophys. 2010 May;497(1-2):28-34. doi: 10.1016/j.abb.2010.03.001. Epub 2010 Mar 4.

Abstract

Glutathione transferase (GST) displaying enhanced activity with the cytostatic drug 1,3-bis-(2-chloroethyl)-1-nitrosourea (BCNU) and structurally related alkylating agents was obtained by molecular evolution. Mutant libraries created by recursive recombination of cDNA coding for human and rodent Theta-class GSTs were heterologously expressed in Escherichia coli and screened with the surrogate substrate 4-nitrophenethyl bromide (NPB) for enhanced alkyltransferase activity. A mutant with a 70-fold increased catalytic efficiency with NPB, compared to human GST T1-1, was isolated. The efficiency in degrading BCNU had improved 170-fold, significantly more than with the model substrate NPB. The enhanced catalytic activity of the mutant GST was also 2-fold higher with BCNU than wild-type mouse GST T1-1, which is 80-fold more efficient than wild-type human GST T1-1. We propose that GSTs catalyzing inactivation of anticancer drugs may find clinical use in protecting sensitive normal tissues to toxic side-effects in treated patients, and as selectable markers in gene therapy.

摘要

通过分子进化获得了对细胞抑制剂 1,3-双-(2-氯乙基)-1-亚硝脲 (BCNU) 和结构相关的烷化剂显示出增强活性的谷胱甘肽转移酶 (GST)。通过对编码人和啮齿动物 Theta 类 GST 的 cDNA 进行递归重组创建的突变体文库在大肠杆菌中异源表达,并使用替代底物 4-硝基苯乙基溴化物 (NPB) 进行筛选,以提高烷基转移酶活性。与 GST T1-1 相比,一种对 NPB 的催化效率提高了 70 倍的突变体被分离出来。与模型底物 NPB 相比,BCNU 的降解效率提高了 170 倍,明显更高。与野生型小鼠 GST T1-1 相比,突变 GST 的催化活性也提高了 2 倍,而野生型人类 GST T1-1 的效率则提高了 80 倍。我们提出,催化抗癌药物失活的 GST 可能在保护接受治疗的患者的敏感正常组织免受毒性副作用方面具有临床应用价值,并可作为基因治疗中的选择性标记。

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