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鉴定人谷氨酰胺环化酶为一种金属酶。咪唑衍生物和杂环螯合剂对其有强力抑制作用。

Identification of human glutaminyl cyclase as a metalloenzyme. Potent inhibition by imidazole derivatives and heterocyclic chelators.

作者信息

Schilling Stephan, Niestroj André J, Rahfeld Jens-Ulrich, Hoffmann Torsten, Wermann Michael, Zunkel Katrin, Wasternack Claus, Demuth Hans-Ulrich

机构信息

Probiodrug Aktiengesellschaft, Weinbergweg 22, Germany.

出版信息

J Biol Chem. 2003 Dec 12;278(50):49773-9. doi: 10.1074/jbc.M309077200. Epub 2003 Sep 30.

Abstract

Human glutaminyl cyclase (QC) was identified as a metalloenzyme as suggested by the time-dependent inhibition by the heterocyclic chelators 1,10-phenanthroline and dipicolinic acid. The effect of EDTA on QC catalysis was negligible. Inactivated enzyme could be fully restored by the addition of Zn2+ in the presence of equimolar concentrations of EDTA. Little reactivation was observed with Co2+ and Mn2+. Other metal ions such as K+, Ca2+, and Ni2+ were inactive under the same conditions. Additionally, imidazole and imidazole derivatives were identified as competitive inhibitors of QC. An initial structure activity-based inhibitor screening of imidazole-derived compounds revealed potent inhibition of QC by imidazole N-1 derivatives. Subsequent data base screening led to the identification of two highly potent inhibitors, 3-[3-(1H-imidazol-1-yl)propyl]-2-thioxoimidazolidin-4-one and 1,4-bis-(imidazol-1-yl)-methyl-2,5-dimethylbenzene, which exhibited respective Ki values of 818 +/- 1 and 295 +/- 5 nm. The binding properties of the imidazole derivatives were further analyzed by the pH dependence of QC inhibition. The kinetically obtained pKa values of 6.94 +/- 0.02, 6.93 +/- 0.03, and 5.60 +/- 0.05 for imidazole, methylimidazole, and benzimidazole, respectively, match the values obtained by titrimetric pKa determination, indicating the requirement for an unprotonated nitrogen for binding to QC. Similarly, the pH dependence of the kinetic parameter Km for the QC-catalyzed conversion of H-Gln-7-ami-no-4-methylcoumarin also implies that only N-terminally unprotonated substrate molecules are bound to the active site of the enzyme, whereas turnover is not affected. The results reveal human QC as a metal-dependent transferase, suggesting that the active site-bound metal is a potential site for interaction with novel, highly potent competitive inhibitors.

摘要

如杂环螯合剂1,10 - 菲咯啉和二吡啶甲酸的时间依赖性抑制作用所表明的那样,人谷氨酰胺环化酶(QC)被鉴定为一种金属酶。EDTA对QC催化作用的影响可忽略不计。在等摩尔浓度的EDTA存在下,通过添加Zn2+可使失活的酶完全恢复活性。用Co2+和Mn2+观察到的再激活作用很小。在相同条件下,其他金属离子如K+、Ca2+和Ni2+没有活性。此外,咪唑和咪唑衍生物被鉴定为QC的竞争性抑制剂。基于结构活性的咪唑衍生化合物的初步抑制剂筛选显示,咪唑N - 1衍生物对QC有强效抑制作用。随后的数据库筛选导致鉴定出两种高效抑制剂,3 - [3 - (1H - 咪唑 - 1 - 基)丙基] - 2 - 硫代咪唑烷 - 4 - 酮和1,4 - 双 - (咪唑 - 1 - 基) - 甲基 - 2,5 - 二甲基苯,它们的Ki值分别为818±1和295±5 nM。通过QC抑制作用的pH依赖性进一步分析了咪唑衍生物的结合特性。动力学获得的咪唑、甲基咪唑和苯并咪唑的pKa值分别为6.94±0.02、6.93±0.03和5.60±0.05,与通过滴定法测定pKa所获得的值相符,这表明需要一个未质子化的氮来与QC结合。同样,QC催化H - Gln - 7 - 氨基 - 4 - 甲基香豆素转化的动力学参数Km的pH依赖性也意味着只有N末端未质子化的底物分子与酶的活性位点结合,而周转率不受影响。结果表明人QC是一种金属依赖性转移酶,这表明活性位点结合的金属是与新型高效竞争性抑制剂相互作用的潜在位点。

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