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首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Thermodynamics of binding of angiotensin-converting enzyme inhibitors to enzyme active site model
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Thermodynamics of binding of angiotensin-converting enzyme inhibitors to enzyme active site model

机译:血管紧张素转化酶抑制剂与酶活性位点模型结合的热力学

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摘要

The density functional theory (DFT) using Becke3LYP functional and the two-layered ONIOM Becke3LYP:MNDO calculations have been carried out to investigate the structural and thermodynamic properties of 29 neutral and deprotonated angiotensin-converting enzyme inhibitors (H2O, enalaprilat, cilazaprilat, imidaprilat, perindoprilat, quinaprilat, ramiprilat, spiraprilat, trandolaprilat, fosinoprilat, omapatrilat, captopril, zofenoprilat, silanediol and keto-ACE) in complex with zinc cation and three first-shell ligands as models of active site of angiotensin-converting enzyme. The influence of deprotonation on the structure and relative energetics of model complexes was examined. Interaction enthalpies and Gibbs energies between inhibitors and angiotensin-converting enzyme active site model were calculated. The structure and thermodynamics of optimized complexes are discussed from the point of view of their biological importance.
机译:利用Becke3LYP泛函和两层ONIOM Becke3LYP:MNDO进行了密度泛函理论(DFT)计算,以研究29种中性和去质子化的血管紧张素转化酶抑制剂(H2O,依那普利拉特,西拉普利拉特,吡虫啉, Perindoprilat,quinaprilat,ramiprilat,spiraprilat,tradolaprilat,fosinoprilat,omapatrilat,captopril,zofenoprilat,硅烷二醇和keto-ACE)与锌阳离子和三个第一壳配体复合,作为血管紧张素转换酶活性位点的模型。研究了去质子化对模型配合物的结构和相对能的影响。计算了抑制剂与血管紧张素转化酶活性位点模型之间的相互作用焓和吉布斯能量。从其生物学重要性的角度讨论了优化复合物的结构和热力学。

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