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人谷胱甘肽转移酶 A2-2 的突变分析确定了支持前药巯嘌呤活性的结构元件。

Mutational analysis of human glutathione transferase A2-2 identifies structural elements supporting high activity with the prodrug azathioprine.

机构信息

Department of Biochemistry and Organic Chemistry, Uppsala University, BMC, Box 576, SE-75123 Uppsala, Sweden.

出版信息

Protein Eng Des Sel. 2012 Apr;25(4):189-97. doi: 10.1093/protein/gzs006. Epub 2012 Feb 14.

DOI:10.1093/protein/gzs006
PMID:22334756
Abstract

Glutathione transferase (GST) A2-2 is the human enzyme displaying the highest catalytic activity with the prodrug azathioprine (Aza). The reaction releases pharmacologically active 6-mercaptopurine by displacing the imidazole moiety from the Aza molecule. The GST-catalyzed reaction is of medical significance, since high rates of Aza activation may lead to adverse side effects in treated patients. The present study involves structure-activity relationships in GST A2-2 variants. Chimeric GSTs were previously generated by DNA shuffling and two peptide segments, one N-terminal and one C-terminal, were identified as primary determinants of Aza activity. The segments contain several residues of the substrate-binding H-site and their significance for supporting high Aza activity was investigated. Substitution of the corresponding two small regions in the low-activity human GST A3-3 or rat GST A3-3 by the human GST A2-2 segments generated chimeras with ∼10-fold enhanced Aza activity. The H-site residues Met208 and Leu213 in the C-terminal segment of GST A2-2 were mutated to produce a library with all possible residue combinations. At a calculated 93% library coverage, all of the 1880 mutants examined showed wild-type or decreased Aza activity, even though some retained activities with alternative substrates, further emphasizing the importance of this region for the targeted activity.

摘要

谷胱甘肽转移酶(GST)A2-2 是人类酶中催化活性最高的酶,可与前药巯嘌呤(Aza)反应。该反应通过从 Aza 分子中置换咪唑部分释放出具有药理活性的 6-巯基嘌呤。GST 催化的反应具有医学意义,因为 Aza 的高激活率可能导致治疗患者的不良反应。本研究涉及 GST A2-2 变体的结构-活性关系。先前通过 DNA 改组生成嵌合 GST,鉴定出一个 N 端和一个 C 端肽段作为 Aza 活性的主要决定因素。这些片段包含底物结合 H 位的几个残基,它们对支持高 Aza 活性的意义进行了研究。用 GST A2-2 片段替代低活性的人 GST A3-3 或大鼠 GST A3-3 的相应两个小区域,生成的嵌合体 Aza 活性提高了约 10 倍。GST A2-2 C 端片段中的 H 位残基 Met208 和 Leu213 发生突变,产生了一个具有所有可能残基组合的文库。在计算出的 93%文库覆盖率下,所检查的 1880 个突变体均显示出野生型或降低的 Aza 活性,尽管有些保留了替代底物的活性,这进一步强调了该区域对靶向活性的重要性。

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