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Conformational flexibility of β-secretase: molecular dynamics simulation and essential dynamics analysis

Bing XiongXiao-qinHUANGLing-lingSHENJian-huaSHENXiao-minLUOXuSHENHua-liangJIANGKai-xianCHEN

2004中国药理学报:英文版Medicine被引 1

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摘要

AIM: Based on the structural analysis to reveal the mechanism of ligand binding to β-secretase and the specificity of each binding sub-site. METHODS: Molecular dynamics was used to simulate on the ligand free β-secretase and ligand bound β-secretase. The trajectories were analyzed using the essential dynamics, and the significant conformational change was illustrated employing the DynDom program. RESULTS: The essential dynamics and DynDom analyses clearly showed that the β-secretase experienced a large conformational change upon the substrate or inhibitor binding. The flap structure adopted a swing motion, gradually covering the active site to facilitate the ligand binding process. Residues Ser86 and I1e87 served as the hinge point. Inhibitor-enzyme interaction analysis revealed that residues at P2, P1, and PI' positions of the inhibitor were very important for the binding, and residues at P2' and P3' positions may be modified to improve the binding specificity. $3 subsite of the enzyme still had space to modify the inhibitors in increasing the binding affinity. CONCLUSION: The information presented here is valuable and could be used to identify small molecular inhibitors of β-secretase.

引用本文(GB/T 7714)

Bing Xiong, Xiao-qinHUANG, Ling-lingSHEN, 等. Conformational flexibility of β-secretase: molecular dynamics simulation and essential dynamics analysis[J]. 中国药理学报:英文版, 2004.

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