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裂体吸虫嘌呤核苷磷酸化酶与新型单环抑制剂复合物的晶体结构。

Crystal structure of Schistosoma purine nucleoside phosphorylase complexed with a novel monocyclic inhibitor.

机构信息

Instituto de Física de São Carlos, Universidade de São Paulo, Brazil.

出版信息

Acta Trop. 2010 May;114(2):97-102. doi: 10.1016/j.actatropica.2010.01.010. Epub 2010 Feb 1.

Abstract

A novel inhibitor of Schistosoma PNP was identified using an "in silico" approach allied to enzyme inhibition assays. The compound has a monocyclic structure which has not been previously described for PNP inhibitors. The crystallographic structure of the complex was determined and used to elucidate the binding mode within the active site. Furthermore, the predicted pose was very similar to that determined crystallographically, validating the methodology. The compound Sm_VS1, despite its low molecular weight, possesses an IC(50) of 1.3 microM, surprisingly low when compared with purine analogues. This is presumably due to the formation of eight hydrogen bonds with key residues in the active site E203, N245 and T244. The results of this study highlight the importance of the use of multiple conformations for the target during virtual screening. Indeed the Sm_VS1 compound was only identified after flipping the N245 side chain. It is expected that the structure will be of use in the development of new highly active non-purine based compounds against the Schistosoma enzyme.

摘要

采用“计算机辅助”方法与酶抑制测定相结合,鉴定了一种新型的血吸虫 PNP 抑制剂。该化合物具有单环结构,以前未在 PNP 抑制剂中描述过。确定了复合物的晶体结构,并用于阐明活性部位内的结合模式。此外,预测的构象与晶体学确定的构象非常相似,验证了该方法的有效性。尽管 Sm_VS1 分子量低,但具有 1.3 μM 的 IC50,与嘌呤类似物相比非常低。这可能是由于与活性部位 E203、N245 和 T244 中的关键残基形成了 8 个氢键。这项研究的结果强调了在虚拟筛选过程中针对目标使用多种构象的重要性。实际上,只有在翻转 N245 侧链后,才鉴定出 Sm_VS1 化合物。预计该结构将有助于开发针对血吸虫酶的新型基于非嘌呤的高活性化合物。

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