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抗癌药物ZD1694与大肠杆菌胸苷酸合成酶的结合:特异性和亲和力评估

Binding of the anticancer drug ZD1694 to E. coli thymidylate synthase: assessing specificity and affinity.

作者信息

Rutenber E E, Stroud R M

机构信息

Department of Biochemistry and Biophysics, University of California at San Francisco, 94143-0448, USA.

出版信息

Structure. 1996 Nov 15;4(11):1317-24. doi: 10.1016/s0969-2126(96)00139-6.

Abstract

BACKGROUND

Thymidylate synthase (TS) catalyzes the reductive methylation of deoxyuridine monophosphate (dUMP) by 5, 10-methylenetetrahydrofolate (CH2H4folate) to form deoxythymidine monophosphate (dTMP) and dihydrofolate (H2folate). The essential role of TS in the cell life cycle makes it an attractive target for the development of substrate and cofactor-based inhibitors that may find efficacy as anticancer and antiproliferative drugs. Antifolates that compete specifically with the binding of CH2H4 folate include the cofactor analog CB3717 (10-propargyl-5,8-dideazafolate). However, the development of potent cofactor analog inhibitors of TS, such as CB3717, as drugs has been slowed by their toxicity, which often becomes apparent as hepatic and renal toxicity mediated by the specific chemistry of the compound. Attempts to abolish toxicity in human patients while preserving potency against the target enzyme, have led to the development of ZD1694, which has already shown significant activity against colorectal tumours.

RESULTS

The three dimensional crystallographic structure of ZD1694 in complex with dUMP and Escherichia coli TS has been determined to a resolution of 2.2 . This was used to evaluate the specific structural determinants of ZD1694 potency and to correlate structure/activity relationships between it and the closely related ligand, CB3717. ZD1694 binds to TS in the same manner as CB3717 and H2 folate, but a methyl group on its quinazoline ring, its thiophene ring and the methyl group at N10 are compensated for by plastic accommodation of the enzyme active site coupled with specific rearrangement in the solvent structure. A specific hydrogen bond between the protein and the inhibitor CB3717 is absent in the case of ZD1694 whose monoglutamate tail is reoriented and more well ordered.

CONCLUSIONS

The binding mode of ZD1694 to thymidylate synthase has been determined at atomic resolution. ZD1694 forms a ternary complex with dUMP and participates in the multi-step TS reaction through the covalent bond formation between dUMP and Cys146 thereby competing with CH2H4 folate at the active site. Analysis of this inhibitor ternary complex structure and comparison with that of CB3717 reveals that the enzyme accommodates the differences between the two inhibitors with small shifts in the positions of key active site residues and by repositioning an active site water molecule, thereby preserving a general binding mode of these inhibitors.

摘要

背景

胸苷酸合成酶(TS)催化脱氧尿苷单磷酸(dUMP)由5,10 - 亚甲基四氢叶酸(CH2H4叶酸)进行还原甲基化反应,生成脱氧胸苷单磷酸(dTMP)和二氢叶酸(H2叶酸)。TS在细胞生命周期中的关键作用使其成为开发基于底物和辅因子的抑制剂的有吸引力的靶点,这些抑制剂可能作为抗癌和抗增殖药物发挥作用。与CH2H4叶酸特异性竞争结合的抗叶酸药物包括辅因子类似物CB3717(10 - 炔丙基 - 5,8 - 二氮杂叶酸)。然而,像CB3717这样有效的TS辅因子类似物抑制剂作为药物的开发因毒性而放缓,其毒性通常表现为由化合物特定化学性质介导的肝毒性和肾毒性。在保留对靶酶活性的同时消除人类患者毒性的尝试导致了ZD1694的开发,ZD1694已显示出对结直肠癌肿瘤有显著活性。

结果

已确定ZD1694与dUMP和大肠杆菌TS复合物的三维晶体结构分辨率为2.2 。这用于评估ZD1694活性的特定结构决定因素,并将其与密切相关配体CB3717之间的结构/活性关系进行关联。ZD1694与CB3717和H2叶酸以相同方式结合到TS上,但它喹唑啉环上的甲基、噻吩环以及N10处的甲基通过酶活性位点的可塑性调节以及溶剂结构中的特定重排得到补偿。在ZD1694中不存在蛋白质与抑制剂CB3717之间的特定氢键,其单谷氨酸尾巴重新定向且排列更有序。

结论

已在原子分辨率下确定ZD1694与胸苷酸合成酶的结合模式。ZD1694与dUMP形成三元复合物,并通过dUMP与Cys146之间的共价键形成参与多步TS反应,从而在活性位点与CH2H4叶酸竞争。对该抑制剂三元复合物结构的分析以及与CB3717的比较表明,酶通过关键活性位点残基位置的微小移动以及重新定位一个活性位点水分子来适应两种抑制剂之间的差异,从而保留了这些抑制剂的一般结合模式。

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