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水介导的底物/产物区分:胸苷酸合成酶在1.83埃分辨率下的产物复合物

Water-mediated substrate/product discrimination: the product complex of thymidylate synthase at 1.83 A.

作者信息

Fauman E B, Rutenber E E, Maley G F, Maley F, Stroud R M

机构信息

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

出版信息

Biochemistry. 1994 Feb 15;33(6):1502-11. doi: 10.1021/bi00172a029.

Abstract

In an irreversible enzyme-catalyzed reaction, strong binding of the products would lead to substantial product inhibition. The X-ray crystal structure of the product complex of thymidylate synthase (1.83-A resolution, R factor = 0.183 for all data between 7.0 and 1.83 A) identifies a bound water molecule that serves to disfavor binding of the product nucleotide, dTMP. This water molecule is hydrogen bonded to absolutely conserved Tyr 146 (using the Lactobacillus casei numbering system) and is displaced by the C7 methyl group of the reaction product thymidylate. The relation between this observation and kinetic and thermodynamic values is discussed. The structure reveals a carbamate modified N-terminus that binds in a highly conserved site, replaced by side chains that can exploit the same site in other TS sequences. The enzyme-products complex is compared to the previously determined structure of enzyme-substrate-cofactor analog. This comparison reveals changes that occur between the first covalent complex formed between enzyme and substrate with an inhibitory cofactor analog and the completed reaction. The almost identical arrangement of ligands in these two structures contributes to our model for the TS reaction and verifies the physiological relevance of the mode in which potent inhibitors bind to this target for rational drug design.

摘要

在不可逆的酶催化反应中,产物的紧密结合会导致显著的产物抑制。胸苷酸合成酶产物复合物的X射线晶体结构(分辨率为1.83 Å,7.0至1.83 Å之间所有数据的R因子为0.183)确定了一个结合水分子,该水分子不利于产物核苷酸dTMP的结合。这个水分子通过氢键与绝对保守的Tyr 146(使用干酪乳杆菌编号系统)相连,并被反应产物胸苷酸的C7甲基取代。讨论了这一观察结果与动力学和热力学值之间的关系。该结构揭示了一个氨基甲酸盐修饰的N末端,它结合在一个高度保守的位点,被其他胸苷酸合成酶序列中可利用相同位点的侧链所取代。将酶-产物复合物与先前确定的酶-底物-辅因子类似物结构进行了比较。这种比较揭示了在酶与底物与抑制性辅因子类似物形成的第一个共价复合物和完成反应之间发生的变化。这两种结构中配体几乎相同的排列有助于我们建立胸苷酸合成酶反应模型,并验证了强效抑制剂与该靶点结合模式在合理药物设计中的生理相关性。

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